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Import.
author Daniele Nicolodi <nicolodi@science.unitn.it>
date Wed, 23 Nov 2011 19:22:13 +0100
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1 <!-- $Id: class_desc_ao_content.html,v 1.16 2011/05/12 19:47:55 ingo Exp $ -->
2
3 <!-- ================================================== -->
4 <!-- BEGIN CONTENT FILE -->
5 <!-- ================================================== -->
6 <!-- ===== link box: Begin ===== -->
7 <p>
8 <table border="1" width="80%">
9 <tr>
10 <td>
11 <table border="0" cellpadding="5" class="categorylist" width="100%">
12 <colgroup>
13 <col width="37%"/>
14 <col width="63%"/>
15 </colgroup>
16 <tbody>
17 <tr valign="top">
18 <td>
19 <a href="class_desc_ao.html#top_properties">Properties</a>
20 </td>
21 <td>Properties of the class</td>
22 </tr>
23 <tr valign="top">
24 <td>
25 <a href="class_desc_ao.html#top_methods">Methods</a>
26 </td>
27 <td>All Methods of the class ordered by category.</td>
28 </tr>
29 <tr valign="top">
30 <td>
31 <a href="constructor_examples_ao.html">Examples</a>
32 </td>
33 <td>Some constructor examples</td>
34 </tr>
35 </tbody>
36 </table>
37 </td>
38 </tr>
39 </table>
40 </p>
41 <!-- ===== link box: End ====== -->
42
43 <!-- ===== Back to Class descriptions ===== -->
44 <a href="class_desc_main.html">
45 <img src="doc_to_top_up.gif" border="0" align="bottom" alt="Back to Class descriptions"/>
46 Back to Class descriptions
47 </a>
48
49 <h2 class="title"><a name="top_properties"/>Properties</h2>
50 <p>
51 The LTPDA toolbox restrict access of the properties.<br></br>
52 The get access is 'public' and thus it is possible to get the values with the dot-command (similar to structures).<br></br>
53 <pre class="programlisting">For example:<br></br>val = obj.prop(2).prop;</pre>
54 The set access is 'protected' and thus it is only possible to assign a value to a property with a set-method.
55 <pre class="programlisting">
56 For example:
57 obj2 = obj1.setName(<span class="string">'my name'</span>) <span class="comment">% This command creates a copy of obj1 (obj1 ~= obj2)</span>
58 obj.setName(<span class="string">'my name'</span>); <span class="comment">% This command applies to obj</span> </pre>
59 </p>
60 <!-- ===== Properties ===== -->
61 <p>
62 <table cellspacing="0" class="body" cellpadding="2" border="0" width="80%">
63 <colgroup>
64 <col width="15%"/>
65 <col width="73%"/>
66 <col width="12%"/>
67 </colgroup>
68 <thead>
69 <tr valign="top">
70 <th class="categorylist">Properties</th>
71 <th class="categorylist">Description</th>
72 <th class="categorylist">Defined in class</th>
73 </tr>
74 </thead>
75 <tbody>
76 <!-- Property: 'data' -->
77 <tr valign="top">
78 <td bgcolor="#f3f4f5">
79 <p><a href="matlab:doc('ao.data')">data</a></p>
80 </td>
81 <td bgcolor="#f3f4f5">
82 <p>Data object associated with this AO</p>
83 </td>
84 <td bgcolor="#f3f4f5">
85 <p>ao</p>
86 </td>
87 </tr>
88 <!-- Property: 'hist' -->
89 <tr valign="top">
90 <td>
91 <p><a href="matlab:doc('ao.hist')">hist</a></p>
92 </td>
93 <td>
94 <p>History of the object (history object)</p>
95 </td>
96 <td>
97 <p>ltpda_uoh</p>
98 </td>
99 </tr>
100 <!-- Property: 'procinfo' -->
101 <tr valign="top">
102 <td bgcolor="#f3f4f5">
103 <p><a href="matlab:doc('ao.procinfo')">procinfo</a></p>
104 </td>
105 <td bgcolor="#f3f4f5">
106 <p>plist with additional information for an object.</p>
107 </td>
108 <td bgcolor="#f3f4f5">
109 <p>ltpda_uoh</p>
110 </td>
111 </tr>
112 <!-- Property: 'plotinfo' -->
113 <tr valign="top">
114 <td>
115 <p><a href="matlab:doc('ao.plotinfo')">plotinfo</a></p>
116 </td>
117 <td>
118 <p>plist with the plot information</p>
119 </td>
120 <td>
121 <p>ltpda_uoh</p>
122 </td>
123 </tr>
124 <!-- Property: 'name' -->
125 <tr valign="top">
126 <td bgcolor="#f3f4f5">
127 <p><a href="matlab:doc('ao.name')">name</a></p>
128 </td>
129 <td bgcolor="#f3f4f5">
130 <p>name of the object</p>
131 </td>
132 <td bgcolor="#f3f4f5">
133 <p>ltpda_uo</p>
134 </td>
135 </tr>
136 <!-- Property: 'description' -->
137 <tr valign="top">
138 <td>
139 <p><a href="matlab:doc('ao.description')">description</a></p>
140 </td>
141 <td>
142 <p>description of the object</p>
143 </td>
144 <td>
145 <p>ltpda_uo</p>
146 </td>
147 </tr>
148 <!-- Property: 'mdlfile' -->
149 <tr valign="top">
150 <td bgcolor="#f3f4f5">
151 <p><a href="matlab:doc('ao.mdlfile')">mdlfile</a></p>
152 </td>
153 <td bgcolor="#f3f4f5">
154 <p>model xml file of the LTPDAworkbench</p>
155 </td>
156 <td bgcolor="#f3f4f5">
157 <p>ltpda_uo</p>
158 </td>
159 </tr>
160 <!-- Property: 'UUID' -->
161 <tr valign="top">
162 <td>
163 <p><a href="matlab:doc('ao.UUID')">UUID</a></p>
164 </td>
165 <td>
166 <p>Universally Unique Identifier of 128-bit</p>
167 </td>
168 <td>
169 <p>ltpda_uo</p>
170 </td>
171 </tr>
172 </tbody>
173 </table>
174 </p>
175
176 <!-- ===== Top of page ===== -->
177 <a href="#top_of_page">
178 <img src="doc_to_top_up.gif" border="0" align="bottom" alt="Back to Top"/>
179 Back to Top
180 </a>
181
182 <h2 class="title"><a name="top_methods"/>Methods</h2>
183 <!-- ===== link box: Begin ===== -->
184 <p>
185 <table border="1" width="80%">
186 <tr>
187 <td>
188 <table border="0" cellpadding="5" class="subcategorylist" width="100%">
189 <colgroup>
190 <col width="37%"/>
191 <col width="63%"/>
192 </colgroup>
193 <tbody>
194 <tr valign="top">
195 <td>
196 <a href="class_desc_ao.html#arithmetic_operator">Arithmetic Operator</a>
197 </td>
198 <td>Arithmetic Operator</td>
199 </tr>
200 <tr valign="top">
201 <td>
202 <a href="class_desc_ao.html#constructor">Constructor</a>
203 </td>
204 <td>Constructor of this class</td>
205 </tr>
206 <tr valign="top">
207 <td>
208 <a href="class_desc_ao.html#converter">Converter</a>
209 </td>
210 <td>Convertor methods</td>
211 </tr>
212 <tr valign="top">
213 <td>
214 <a href="class_desc_ao.html#helper">Helper</a>
215 </td>
216 <td>Helper methods only for internal usage</td>
217 </tr>
218 <tr valign="top">
219 <td>
220 <a href="class_desc_ao.html#internal">Internal</a>
221 </td>
222 <td>Internal methods only for internal usage</td>
223 </tr>
224 <tr valign="top">
225 <td>
226 <a href="class_desc_ao.html#operator">Operator</a>
227 </td>
228 <td>Operator methods</td>
229 </tr>
230 <tr valign="top">
231 <td>
232 <a href="class_desc_ao.html#output">Output</a>
233 </td>
234 <td>Output methods</td>
235 </tr>
236 <tr valign="top">
237 <td>
238 <a href="class_desc_ao.html#relational_operator">Relational Operator</a>
239 </td>
240 <td>Relational operator methods</td>
241 </tr>
242 <tr valign="top">
243 <td>
244 <a href="class_desc_ao.html#signal_processing">Signal Processing</a>
245 </td>
246 <td>Signal processing methods</td>
247 </tr>
248 <tr valign="top">
249 <td>
250 <a href="class_desc_ao.html#trigonometry">Trigonometry</a>
251 </td>
252 <td>Trigometry methods</td>
253 </tr>
254 </tbody>
255 </table>
256 </td>
257 </tr>
258 </table>
259 </p>
260 <!-- ===== link box: End ====== -->
261
262 <!-- ===== Top of page ===== -->
263 <a href="#top_of_page">
264 <img src="doc_to_top_up.gif" border="0" align="bottom" alt="Back to Top"/>
265 Back to Top
266 </a>
267
268 <!-- ===== Methods Category: Arithmetic_Operator ===== -->
269 <h3 class="title"><a name="arithmetic_operator"/>Arithmetic Operator</h3>
270 <p>
271 <table cellspacing="0" class="body" cellpadding="2" border="0" width="80%">
272 <colgroup>
273 <col width="15%"/>
274 <col width="73%"/>
275 <col width="12%"/>
276 </colgroup>
277 <thead>
278 <tr valign="top">
279 <th class="categorylist">Methods</th>
280 <th class="categorylist">Description</th>
281 <th class="categorylist">Defined in class</th>
282 </tr>
283 </thead>
284 <tbody>
285 <!-- ao/and -->
286 <tr valign="top">
287 <td bgcolor="#f3f4f5">
288 <p><a href="matlab:doc('ao/and')">and</a></p>
289 </td>
290 <td bgcolor="#f3f4f5">
291 <p>AND (&) overloads the and (&) method for analysis objects.</p>
292 </td>
293 <td bgcolor="#f3f4f5">
294 <p>ao</p>
295 </td>
296 </tr>
297 <!-- ao/minus -->
298 <tr valign="top">
299 <td>
300 <p><a href="matlab:doc('ao/minus')">minus</a></p>
301 </td>
302 <td>
303 <p>MINUS implements subtraction operator for analysis objects.</p>
304 </td>
305 <td>
306 <p>ao</p>
307 </td>
308 </tr>
309 <!-- ao/mpower -->
310 <tr valign="top">
311 <td bgcolor="#f3f4f5">
312 <p><a href="matlab:doc('ao/mpower')">mpower</a></p>
313 </td>
314 <td bgcolor="#f3f4f5">
315 <p>MPOWER implements mpower operator for analysis objects.</p>
316 </td>
317 <td bgcolor="#f3f4f5">
318 <p>ao</p>
319 </td>
320 </tr>
321 <!-- ao/mrdivide -->
322 <tr valign="top">
323 <td>
324 <p><a href="matlab:doc('ao/mrdivide')">mrdivide</a></p>
325 </td>
326 <td>
327 <p>MRDIVIDE implements mrdivide operator for analysis objects.</p>
328 </td>
329 <td>
330 <p>ao</p>
331 </td>
332 </tr>
333 <!-- ao/mtimes -->
334 <tr valign="top">
335 <td bgcolor="#f3f4f5">
336 <p><a href="matlab:doc('ao/mtimes')">mtimes</a></p>
337 </td>
338 <td bgcolor="#f3f4f5">
339 <p>MTIMES implements mtimes operator for analysis objects.</p>
340 </td>
341 <td bgcolor="#f3f4f5">
342 <p>ao</p>
343 </td>
344 </tr>
345 <!-- ao/or -->
346 <tr valign="top">
347 <td>
348 <p><a href="matlab:doc('ao/or')">or</a></p>
349 </td>
350 <td>
351 <p>OR (|) overloads the or (|) method for Analysis objects.</p>
352 </td>
353 <td>
354 <p>ao</p>
355 </td>
356 </tr>
357 <!-- ao/plus -->
358 <tr valign="top">
359 <td bgcolor="#f3f4f5">
360 <p><a href="matlab:doc('ao/plus')">plus</a></p>
361 </td>
362 <td bgcolor="#f3f4f5">
363 <p>PLUS implements addition operator for analysis objects.</p>
364 </td>
365 <td bgcolor="#f3f4f5">
366 <p>ao</p>
367 </td>
368 </tr>
369 <!-- ao/power -->
370 <tr valign="top">
371 <td>
372 <p><a href="matlab:doc('ao/power')">power</a></p>
373 </td>
374 <td>
375 <p>POWER implements power operator for analysis objects.</p>
376 </td>
377 <td>
378 <p>ao</p>
379 </td>
380 </tr>
381 <!-- ao/rdivide -->
382 <tr valign="top">
383 <td bgcolor="#f3f4f5">
384 <p><a href="matlab:doc('ao/rdivide')">rdivide</a></p>
385 </td>
386 <td bgcolor="#f3f4f5">
387 <p>RDIVIDE implements division operator for analysis objects.</p>
388 </td>
389 <td bgcolor="#f3f4f5">
390 <p>ao</p>
391 </td>
392 </tr>
393 <!-- ao/times -->
394 <tr valign="top">
395 <td>
396 <p><a href="matlab:doc('ao/times')">times</a></p>
397 </td>
398 <td>
399 <p>TIMES implements multiplication operator for analysis objects.</p>
400 </td>
401 <td>
402 <p>ao</p>
403 </td>
404 </tr>
405 </tbody>
406 </table>
407 <!-- ===== Back to Top of Methods ===== -->
408 <a href="#top_methods">
409 <img src="doc_to_top_up.gif" border="0" align="bottom" alt="Back to Top of Section"/>
410 Back to Top of Section
411 </a>
412
413 </p>
414
415 <!-- ===== Methods Category: Constructor ===== -->
416 <h3 class="title"><a name="constructor"/>Constructor</h3>
417 <p>
418 <table cellspacing="0" class="body" cellpadding="2" border="0" width="80%">
419 <colgroup>
420 <col width="15%"/>
421 <col width="73%"/>
422 <col width="12%"/>
423 </colgroup>
424 <thead>
425 <tr valign="top">
426 <th class="categorylist">Methods</th>
427 <th class="categorylist">Description</th>
428 <th class="categorylist">Defined in class</th>
429 </tr>
430 </thead>
431 <tbody>
432 <!-- ao/ao -->
433 <tr valign="top">
434 <td bgcolor="#f3f4f5">
435 <p><a href="matlab:doc('ao')">ao</a></p>
436 </td>
437 <td bgcolor="#f3f4f5">
438 <p>AO analysis object class constructor.</p>
439 </td>
440 <td bgcolor="#f3f4f5">
441 <p>ao</p>
442 </td>
443 </tr>
444 <!-- ltpda_uoh/rebuild -->
445 <tr valign="top">
446 <td>
447 <p><a href="matlab:doc('ao/rebuild')">rebuild</a></p>
448 </td>
449 <td>
450 <p>REBUILD rebuilds the input objects using the history.</p>
451 </td>
452 <td>
453 <p>ltpda_uoh</p>
454 </td>
455 </tr>
456 </tbody>
457 </table>
458 <!-- ===== Back to Top of Methods ===== -->
459 <a href="#top_methods">
460 <img src="doc_to_top_up.gif" border="0" align="bottom" alt="Back to Top of Section"/>
461 Back to Top of Section
462 </a>
463
464 </p>
465
466 <!-- ===== Methods Category: Converter ===== -->
467 <h3 class="title"><a name="converter"/>Converter</h3>
468 <p>
469 <table cellspacing="0" class="body" cellpadding="2" border="0" width="80%">
470 <colgroup>
471 <col width="15%"/>
472 <col width="73%"/>
473 <col width="12%"/>
474 </colgroup>
475 <thead>
476 <tr valign="top">
477 <th class="categorylist">Methods</th>
478 <th class="categorylist">Description</th>
479 <th class="categorylist">Defined in class</th>
480 </tr>
481 </thead>
482 <tbody>
483 <!-- ao/double -->
484 <tr valign="top">
485 <td bgcolor="#f3f4f5">
486 <p><a href="matlab:doc('ao/double')">double</a></p>
487 </td>
488 <td bgcolor="#f3f4f5">
489 <p>DOUBLE overloads double() function for analysis objects.</p>
490 </td>
491 <td bgcolor="#f3f4f5">
492 <p>ao</p>
493 </td>
494 </tr>
495 </tbody>
496 </table>
497 <!-- ===== Back to Top of Methods ===== -->
498 <a href="#top_methods">
499 <img src="doc_to_top_up.gif" border="0" align="bottom" alt="Back to Top of Section"/>
500 Back to Top of Section
501 </a>
502
503 </p>
504
505 <!-- ===== Methods Category: Helper ===== -->
506 <h3 class="title"><a name="helper"/>Helper</h3>
507 <p>
508 <table cellspacing="0" class="body" cellpadding="2" border="0" width="80%">
509 <colgroup>
510 <col width="15%"/>
511 <col width="73%"/>
512 <col width="12%"/>
513 </colgroup>
514 <thead>
515 <tr valign="top">
516 <th class="categorylist">Methods</th>
517 <th class="categorylist">Description</th>
518 <th class="categorylist">Defined in class</th>
519 </tr>
520 </thead>
521 <tbody>
522 <!-- ao/convert -->
523 <tr valign="top">
524 <td bgcolor="#f3f4f5">
525 <p><a href="matlab:doc('ao/convert')">convert</a></p>
526 </td>
527 <td bgcolor="#f3f4f5">
528 <p>CONVERT perform various conversions on the ao.</p>
529 </td>
530 <td bgcolor="#f3f4f5">
531 <p>ao</p>
532 </td>
533 </tr>
534 <!-- ao/demux -->
535 <tr valign="top">
536 <td>
537 <p><a href="matlab:doc('ao/demux')">demux</a></p>
538 </td>
539 <td>
540 <p>DEMUX splits the input vector of AOs into a number of output AOs.</p>
541 </td>
542 <td>
543 <p>ao</p>
544 </td>
545 </tr>
546 <!-- ao/dx -->
547 <tr valign="top">
548 <td bgcolor="#f3f4f5">
549 <p><a href="matlab:doc('ao/dx')">dx</a></p>
550 </td>
551 <td bgcolor="#f3f4f5">
552 <p>DX Get the data property 'dx'.</p>
553 </td>
554 <td bgcolor="#f3f4f5">
555 <p>ao</p>
556 </td>
557 </tr>
558 <!-- ao/dy -->
559 <tr valign="top">
560 <td>
561 <p><a href="matlab:doc('ao/dy')">dy</a></p>
562 </td>
563 <td>
564 <p>DY Get the data property 'dy'.</p>
565 </td>
566 <td>
567 <p>ao</p>
568 </td>
569 </tr>
570 <!-- ao/dz -->
571 <tr valign="top">
572 <td bgcolor="#f3f4f5">
573 <p><a href="matlab:doc('ao/dz')">dz</a></p>
574 </td>
575 <td bgcolor="#f3f4f5">
576 <p>DX Get the data property 'dz'.</p>
577 </td>
578 <td bgcolor="#f3f4f5">
579 <p>ao</p>
580 </td>
581 </tr>
582 <!-- ao/find -->
583 <tr valign="top">
584 <td>
585 <p><a href="matlab:doc('ao/find')">find</a></p>
586 </td>
587 <td>
588 <p>FIND particular samples that satisfy the input query and return a new AO.</p>
589 </td>
590 <td>
591 <p>ao</p>
592 </td>
593 </tr>
594 <!-- ao/fromProcinfo -->
595 <tr valign="top">
596 <td bgcolor="#f3f4f5">
597 <p><a href="matlab:doc('ao/fromProcinfo')">fromProcinfo</a></p>
598 </td>
599 <td bgcolor="#f3f4f5">
600 <p>FROMPROCINFO returns for a given key-name the value of the procinfo-plist</p>
601 </td>
602 <td bgcolor="#f3f4f5">
603 <p>ao</p>
604 </td>
605 </tr>
606 <!-- ao/fs -->
607 <tr valign="top">
608 <td>
609 <p><a href="matlab:doc('ao/fs')">fs</a></p>
610 </td>
611 <td>
612 <p>FS Get the data property 'fs'.</p>
613 </td>
614 <td>
615 <p>ao</p>
616 </td>
617 </tr>
618 <!-- ao/join -->
619 <tr valign="top">
620 <td bgcolor="#f3f4f5">
621 <p><a href="matlab:doc('ao/join')">join</a></p>
622 </td>
623 <td bgcolor="#f3f4f5">
624 <p>JOIN multiple AOs into a single AO.</p>
625 </td>
626 <td bgcolor="#f3f4f5">
627 <p>ao</p>
628 </td>
629 </tr>
630 <!-- ao/len -->
631 <tr valign="top">
632 <td>
633 <p><a href="matlab:doc('ao/len')">len</a></p>
634 </td>
635 <td>
636 <p>LEN overloads the length operator for Analysis objects. Length of the data samples.</p>
637 </td>
638 <td>
639 <p>ao</p>
640 </td>
641 </tr>
642 <!-- ao/nsecs -->
643 <tr valign="top">
644 <td bgcolor="#f3f4f5">
645 <p><a href="matlab:doc('ao/nsecs')">nsecs</a></p>
646 </td>
647 <td bgcolor="#f3f4f5">
648 <p>NSECS Get the data property 'nsecs'.</p>
649 </td>
650 <td bgcolor="#f3f4f5">
651 <p>ao</p>
652 </td>
653 </tr>
654 <!-- ao/scatterData -->
655 <tr valign="top">
656 <td>
657 <p><a href="matlab:doc('ao/scatterData')">scatterData</a></p>
658 </td>
659 <td>
660 <p>SCATTERDATA Creates from the y-values of two input AOs an new AO(xydata)</p>
661 </td>
662 <td>
663 <p>ao</p>
664 </td>
665 </tr>
666 <!-- ao/search -->
667 <tr valign="top">
668 <td bgcolor="#f3f4f5">
669 <p><a href="matlab:doc('ao/search')">search</a></p>
670 </td>
671 <td bgcolor="#f3f4f5">
672 <p>SEARCH selects AOs that match the given name.</p>
673 </td>
674 <td bgcolor="#f3f4f5">
675 <p>ao</p>
676 </td>
677 </tr>
678 <!-- ao/setDx -->
679 <tr valign="top">
680 <td>
681 <p><a href="matlab:doc('ao/setDx')">setDx</a></p>
682 </td>
683 <td>
684 <p>SETDX sets the 'dx' property of the ao.</p>
685 </td>
686 <td>
687 <p>ao</p>
688 </td>
689 </tr>
690 <!-- ao/setDy -->
691 <tr valign="top">
692 <td bgcolor="#f3f4f5">
693 <p><a href="matlab:doc('ao/setDy')">setDy</a></p>
694 </td>
695 <td bgcolor="#f3f4f5">
696 <p>SETDY sets the 'dy' property of the ao.</p>
697 </td>
698 <td bgcolor="#f3f4f5">
699 <p>ao</p>
700 </td>
701 </tr>
702 <!-- ao/setFs -->
703 <tr valign="top">
704 <td>
705 <p><a href="matlab:doc('ao/setFs')">setFs</a></p>
706 </td>
707 <td>
708 <p>SETFS sets the 'fs' property of the ao.</p>
709 </td>
710 <td>
711 <p>ao</p>
712 </td>
713 </tr>
714 <!-- ao/setT0 -->
715 <tr valign="top">
716 <td bgcolor="#f3f4f5">
717 <p><a href="matlab:doc('ao/setT0')">setT0</a></p>
718 </td>
719 <td bgcolor="#f3f4f5">
720 <p>SETT0 sets the 't0' property of the ao.</p>
721 </td>
722 <td bgcolor="#f3f4f5">
723 <p>ao</p>
724 </td>
725 </tr>
726 <!-- ao/setX -->
727 <tr valign="top">
728 <td>
729 <p><a href="matlab:doc('ao/setX')">setX</a></p>
730 </td>
731 <td>
732 <p>SETX sets the 'x' property of the ao.</p>
733 </td>
734 <td>
735 <p>ao</p>
736 </td>
737 </tr>
738 <!-- ao/setXY -->
739 <tr valign="top">
740 <td bgcolor="#f3f4f5">
741 <p><a href="matlab:doc('ao/setXY')">setXY</a></p>
742 </td>
743 <td bgcolor="#f3f4f5">
744 <p>SETXY sets the 'xy' property of the ao.</p>
745 </td>
746 <td bgcolor="#f3f4f5">
747 <p>ao</p>
748 </td>
749 </tr>
750 <!-- ao/setXunits -->
751 <tr valign="top">
752 <td>
753 <p><a href="matlab:doc('ao/setXunits')">setXunits</a></p>
754 </td>
755 <td>
756 <p>SETXUNITS sets the 'xunits' property of the ao.</p>
757 </td>
758 <td>
759 <p>ao</p>
760 </td>
761 </tr>
762 <!-- ao/setY -->
763 <tr valign="top">
764 <td bgcolor="#f3f4f5">
765 <p><a href="matlab:doc('ao/setY')">setY</a></p>
766 </td>
767 <td bgcolor="#f3f4f5">
768 <p>SETY sets the 'y' property of the ao.</p>
769 </td>
770 <td bgcolor="#f3f4f5">
771 <p>ao</p>
772 </td>
773 </tr>
774 <!-- ao/setYunits -->
775 <tr valign="top">
776 <td>
777 <p><a href="matlab:doc('ao/setYunits')">setYunits</a></p>
778 </td>
779 <td>
780 <p>SETYUNITS sets the 'yunits' property of the ao.</p>
781 </td>
782 <td>
783 <p>ao</p>
784 </td>
785 </tr>
786 <!-- ao/setZ -->
787 <tr valign="top">
788 <td bgcolor="#f3f4f5">
789 <p><a href="matlab:doc('ao/setZ')">setZ</a></p>
790 </td>
791 <td bgcolor="#f3f4f5">
792 <p>SETZ sets the 'z' property of the ao.</p>
793 </td>
794 <td bgcolor="#f3f4f5">
795 <p>ao</p>
796 </td>
797 </tr>
798 <!-- ao/setZunits -->
799 <tr valign="top">
800 <td>
801 <p><a href="matlab:doc('ao/setZunits')">setZunits</a></p>
802 </td>
803 <td>
804 <p>SETZUNITS sets the 'zunits' property of the ao.</p>
805 </td>
806 <td>
807 <p>ao</p>
808 </td>
809 </tr>
810 <!-- ao/simplifyYunits -->
811 <tr valign="top">
812 <td bgcolor="#f3f4f5">
813 <p><a href="matlab:doc('ao/simplifyYunits')">simplifyYunits</a></p>
814 </td>
815 <td bgcolor="#f3f4f5">
816 <p>SIMPLIFYYUNITS simplify the 'yunits' property of the ao.</p>
817 </td>
818 <td bgcolor="#f3f4f5">
819 <p>ao</p>
820 </td>
821 </tr>
822 <!-- ao/t0 -->
823 <tr valign="top">
824 <td>
825 <p><a href="matlab:doc('ao/t0')">t0</a></p>
826 </td>
827 <td>
828 <p>T0 Get the data property 't0'.</p>
829 </td>
830 <td>
831 <p>ao</p>
832 </td>
833 </tr>
834 <!-- ao/timeshift -->
835 <tr valign="top">
836 <td bgcolor="#f3f4f5">
837 <p><a href="matlab:doc('ao/timeshift')">timeshift</a></p>
838 </td>
839 <td bgcolor="#f3f4f5">
840 <p>TIMESHIFT for AO/tsdata objects, shifts the time axis such that x(1) = 0.</p>
841 </td>
842 <td bgcolor="#f3f4f5">
843 <p>ao</p>
844 </td>
845 </tr>
846 <!-- ao/validate -->
847 <tr valign="top">
848 <td>
849 <p><a href="matlab:doc('ao/validate')">validate</a></p>
850 </td>
851 <td>
852 <p>VALIDATE checks that the input Analysis Object is reproducible and valid.</p>
853 </td>
854 <td>
855 <p>ao</p>
856 </td>
857 </tr>
858 <!-- ao/x -->
859 <tr valign="top">
860 <td bgcolor="#f3f4f5">
861 <p><a href="matlab:doc('ao/x')">x</a></p>
862 </td>
863 <td bgcolor="#f3f4f5">
864 <p>X Get the data property 'x'.</p>
865 </td>
866 <td bgcolor="#f3f4f5">
867 <p>ao</p>
868 </td>
869 </tr>
870 <!-- ao/xunits -->
871 <tr valign="top">
872 <td>
873 <p><a href="matlab:doc('ao/xunits')">xunits</a></p>
874 </td>
875 <td>
876 <p>XUNITS Get the data property 'xunits'.</p>
877 </td>
878 <td>
879 <p>ao</p>
880 </td>
881 </tr>
882 <!-- ao/y -->
883 <tr valign="top">
884 <td bgcolor="#f3f4f5">
885 <p><a href="matlab:doc('ao/y')">y</a></p>
886 </td>
887 <td bgcolor="#f3f4f5">
888 <p>Y Get the data property 'y'.</p>
889 </td>
890 <td bgcolor="#f3f4f5">
891 <p>ao</p>
892 </td>
893 </tr>
894 <!-- ao/yunits -->
895 <tr valign="top">
896 <td>
897 <p><a href="matlab:doc('ao/yunits')">yunits</a></p>
898 </td>
899 <td>
900 <p>YUNITS Get the data property 'yunits'.</p>
901 </td>
902 <td>
903 <p>ao</p>
904 </td>
905 </tr>
906 <!-- ao/z -->
907 <tr valign="top">
908 <td bgcolor="#f3f4f5">
909 <p><a href="matlab:doc('ao/z')">z</a></p>
910 </td>
911 <td bgcolor="#f3f4f5">
912 <p>Z Get the data property 'z'.</p>
913 </td>
914 <td bgcolor="#f3f4f5">
915 <p>ao</p>
916 </td>
917 </tr>
918 <!-- ao/zunits -->
919 <tr valign="top">
920 <td>
921 <p><a href="matlab:doc('ao/zunits')">zunits</a></p>
922 </td>
923 <td>
924 <p>ZUNITS Get the data property 'zunits'.</p>
925 </td>
926 <td>
927 <p>ao</p>
928 </td>
929 </tr>
930 <!-- ltpda_obj/get -->
931 <tr valign="top">
932 <td bgcolor="#f3f4f5">
933 <p><a href="matlab:doc('ao/get')">get</a></p>
934 </td>
935 <td bgcolor="#f3f4f5">
936 <p>GET get a property of a object.</p>
937 </td>
938 <td bgcolor="#f3f4f5">
939 <p>ltpda_obj</p>
940 </td>
941 </tr>
942 <!-- ltpda_uoh/created -->
943 <tr valign="top">
944 <td>
945 <p><a href="matlab:doc('ao/created')">created</a></p>
946 </td>
947 <td>
948 <p>CREATED Returns a time object of the last modification.</p>
949 </td>
950 <td>
951 <p>ltpda_uoh</p>
952 </td>
953 </tr>
954 <!-- ltpda_uoh/creator -->
955 <tr valign="top">
956 <td bgcolor="#f3f4f5">
957 <p><a href="matlab:doc('ao/creator')">creator</a></p>
958 </td>
959 <td bgcolor="#f3f4f5">
960 <p>CREATOR Extract the creator(s) from the history.</p>
961 </td>
962 <td bgcolor="#f3f4f5">
963 <p>ltpda_uoh</p>
964 </td>
965 </tr>
966 <!-- ltpda_uoh/csvexport -->
967 <tr valign="top">
968 <td>
969 <p><a href="matlab:doc('ao/csvexport')">csvexport</a></p>
970 </td>
971 <td>
972 <p>CSVEXPORT Exports the data of an object to a csv file.</p>
973 </td>
974 <td>
975 <p>ltpda_uoh</p>
976 </td>
977 </tr>
978 <!-- ltpda_uoh/index -->
979 <tr valign="top">
980 <td bgcolor="#f3f4f5">
981 <p><a href="matlab:doc('ao/index')">index</a></p>
982 </td>
983 <td bgcolor="#f3f4f5">
984 <p>INDEX index into a 'ltpda_uoh' object array or matrix. This properly captures the history.</p>
985 </td>
986 <td bgcolor="#f3f4f5">
987 <p>ltpda_uoh</p>
988 </td>
989 </tr>
990 <!-- ltpda_uoh/requirements -->
991 <tr valign="top">
992 <td>
993 <p><a href="matlab:doc('ao/requirements')">requirements</a></p>
994 </td>
995 <td>
996 <p>REQUIREMENTS Returns a list of LTPDA extension requirements for a given object.</p>
997 </td>
998 <td>
999 <p>ltpda_uoh</p>
1000 </td>
1001 </tr>
1002 <!-- ltpda_uoh/setDescription -->
1003 <tr valign="top">
1004 <td bgcolor="#f3f4f5">
1005 <p><a href="matlab:doc('ao/setDescription')">setDescription</a></p>
1006 </td>
1007 <td bgcolor="#f3f4f5">
1008 <p>SETDESCRIPTION sets the 'description' property of a ltpda_uoh object.</p>
1009 </td>
1010 <td bgcolor="#f3f4f5">
1011 <p>ltpda_uoh</p>
1012 </td>
1013 </tr>
1014 <!-- ltpda_uoh/setMdlfile -->
1015 <tr valign="top">
1016 <td>
1017 <p><a href="matlab:doc('ao/setMdlfile')">setMdlfile</a></p>
1018 </td>
1019 <td>
1020 <p>SETMDLFILE sets the 'mdlfile' property of a ltpda_uoh object.</p>
1021 </td>
1022 <td>
1023 <p>ltpda_uoh</p>
1024 </td>
1025 </tr>
1026 <!-- ltpda_uoh/setName -->
1027 <tr valign="top">
1028 <td bgcolor="#f3f4f5">
1029 <p><a href="matlab:doc('ao/setName')">setName</a></p>
1030 </td>
1031 <td bgcolor="#f3f4f5">
1032 <p>SETNAME Sets the property 'name' of an ltpda_uoh object.</p>
1033 </td>
1034 <td bgcolor="#f3f4f5">
1035 <p>ltpda_uoh</p>
1036 </td>
1037 </tr>
1038 <!-- ltpda_uoh/setPlotinfo -->
1039 <tr valign="top">
1040 <td>
1041 <p><a href="matlab:doc('ao/setPlotinfo')">setPlotinfo</a></p>
1042 </td>
1043 <td>
1044 <p>SETPLOTINFO sets the 'plotinfo' property of a ltpda_uoh object.</p>
1045 </td>
1046 <td>
1047 <p>ltpda_uoh</p>
1048 </td>
1049 </tr>
1050 <!-- ltpda_uoh/setProcinfo -->
1051 <tr valign="top">
1052 <td bgcolor="#f3f4f5">
1053 <p><a href="matlab:doc('ao/setProcinfo')">setProcinfo</a></p>
1054 </td>
1055 <td bgcolor="#f3f4f5">
1056 <p>SETPROCINFO sets the 'procinfo' property of a ltpda_uoh object.</p>
1057 </td>
1058 <td bgcolor="#f3f4f5">
1059 <p>ltpda_uoh</p>
1060 </td>
1061 </tr>
1062 </tbody>
1063 </table>
1064 <!-- ===== Back to Top of Methods ===== -->
1065 <a href="#top_methods">
1066 <img src="doc_to_top_up.gif" border="0" align="bottom" alt="Back to Top of Section"/>
1067 Back to Top of Section
1068 </a>
1069
1070 </p>
1071
1072 <!-- ===== Methods Category: Internal ===== -->
1073 <h3 class="title"><a name="internal"/>Internal</h3>
1074 <p>
1075 <table cellspacing="0" class="body" cellpadding="2" border="0" width="80%">
1076 <colgroup>
1077 <col width="15%"/>
1078 <col width="73%"/>
1079 <col width="12%"/>
1080 </colgroup>
1081 <thead>
1082 <tr valign="top">
1083 <th class="categorylist">Methods</th>
1084 <th class="categorylist">Description</th>
1085 <th class="categorylist">Defined in class</th>
1086 </tr>
1087 </thead>
1088 <tbody>
1089 <!-- ao/char -->
1090 <tr valign="top">
1091 <td bgcolor="#f3f4f5">
1092 <p><a href="matlab:doc('ao/char')">char</a></p>
1093 </td>
1094 <td bgcolor="#f3f4f5">
1095 <p>CHAR overloads char() function for analysis objects.</p>
1096 </td>
1097 <td bgcolor="#f3f4f5">
1098 <p>ao</p>
1099 </td>
1100 </tr>
1101 <!-- ao/generateConstructorPlist -->
1102 <tr valign="top">
1103 <td>
1104 <p><a href="matlab:doc('ao/generateConstructorPlist')">generateConstructorPlist</a></p>
1105 </td>
1106 <td>
1107 <p>GENERATECONSTRUCTORPLIST generates a PLIST from the properties which can rebuild the object.</p>
1108 </td>
1109 <td>
1110 <p>ao</p>
1111 </td>
1112 </tr>
1113 <!-- ao/md5 -->
1114 <tr valign="top">
1115 <td bgcolor="#f3f4f5">
1116 <p><a href="matlab:doc('ao/md5')">md5</a></p>
1117 </td>
1118 <td bgcolor="#f3f4f5">
1119 <p>MD5 computes an MD5 checksum from an analysis objects.</p>
1120 </td>
1121 <td bgcolor="#f3f4f5">
1122 <p>ao</p>
1123 </td>
1124 </tr>
1125 <!-- ao/plot -->
1126 <tr valign="top">
1127 <td>
1128 <p><a href="matlab:doc('ao/plot')">plot</a></p>
1129 </td>
1130 <td>
1131 <p>PLOT a simple plot of analysis objects.</p>
1132 </td>
1133 <td>
1134 <p>ao</p>
1135 </td>
1136 </tr>
1137 <!-- ltpda_obj/isprop -->
1138 <tr valign="top">
1139 <td bgcolor="#f3f4f5">
1140 <p><a href="matlab:doc('ao/isprop')">isprop</a></p>
1141 </td>
1142 <td bgcolor="#f3f4f5">
1143 <p>ISPROP tests if the given field is one of the object properties.</p>
1144 </td>
1145 <td bgcolor="#f3f4f5">
1146 <p>ltpda_obj</p>
1147 </td>
1148 </tr>
1149 <!-- ltpda_uo/bsubmit -->
1150 <tr valign="top">
1151 <td>
1152 <p><a href="matlab:doc('ao/bsubmit')">bsubmit</a></p>
1153 </td>
1154 <td>
1155 <p>BSUBMIT Submits the given collection of objects in binary form to an LTPDA repository</p>
1156 </td>
1157 <td>
1158 <p>ltpda_uo</p>
1159 </td>
1160 </tr>
1161 <!-- ltpda_uo/submit -->
1162 <tr valign="top">
1163 <td bgcolor="#f3f4f5">
1164 <p><a href="matlab:doc('ao/submit')">submit</a></p>
1165 </td>
1166 <td bgcolor="#f3f4f5">
1167 <p>SUBMIT Submits the given objects to an LTPDA repository</p>
1168 </td>
1169 <td bgcolor="#f3f4f5">
1170 <p>ltpda_uo</p>
1171 </td>
1172 </tr>
1173 <!-- ltpda_uo/update -->
1174 <tr valign="top">
1175 <td>
1176 <p><a href="matlab:doc('ao/update')">update</a></p>
1177 </td>
1178 <td>
1179 <p>UPDATE Updates the given object in an LTPDA repository</p>
1180 </td>
1181 <td>
1182 <p>ltpda_uo</p>
1183 </td>
1184 </tr>
1185 <!-- ltpda_uoh/string -->
1186 <tr valign="top">
1187 <td bgcolor="#f3f4f5">
1188 <p><a href="matlab:doc('ao/string')">string</a></p>
1189 </td>
1190 <td bgcolor="#f3f4f5">
1191 <p>STRING writes a command string that can be used to recreate the input object(s).</p>
1192 </td>
1193 <td bgcolor="#f3f4f5">
1194 <p>ltpda_uoh</p>
1195 </td>
1196 </tr>
1197 <!-- ltpda_uoh/type -->
1198 <tr valign="top">
1199 <td>
1200 <p><a href="matlab:doc('ao/type')">type</a></p>
1201 </td>
1202 <td>
1203 <p>TYPE converts the input objects to MATLAB functions.</p>
1204 </td>
1205 <td>
1206 <p>ltpda_uoh</p>
1207 </td>
1208 </tr>
1209 </tbody>
1210 </table>
1211 <!-- ===== Back to Top of Methods ===== -->
1212 <a href="#top_methods">
1213 <img src="doc_to_top_up.gif" border="0" align="bottom" alt="Back to Top of Section"/>
1214 Back to Top of Section
1215 </a>
1216
1217 </p>
1218
1219 <!-- ===== Methods Category: Operator ===== -->
1220 <h3 class="title"><a name="operator"/>Operator</h3>
1221 <p>
1222 <table cellspacing="0" class="body" cellpadding="2" border="0" width="80%">
1223 <colgroup>
1224 <col width="15%"/>
1225 <col width="73%"/>
1226 <col width="12%"/>
1227 </colgroup>
1228 <thead>
1229 <tr valign="top">
1230 <th class="categorylist">Methods</th>
1231 <th class="categorylist">Description</th>
1232 <th class="categorylist">Defined in class</th>
1233 </tr>
1234 </thead>
1235 <tbody>
1236 <!-- ao/abs -->
1237 <tr valign="top">
1238 <td bgcolor="#f3f4f5">
1239 <p><a href="matlab:doc('ao/abs')">abs</a></p>
1240 </td>
1241 <td bgcolor="#f3f4f5">
1242 <p>ABS overloads the Absolute value method for analysis objects.</p>
1243 </td>
1244 <td bgcolor="#f3f4f5">
1245 <p>ao</p>
1246 </td>
1247 </tr>
1248 <!-- ao/acos -->
1249 <tr valign="top">
1250 <td>
1251 <p><a href="matlab:doc('ao/acos')">acos</a></p>
1252 </td>
1253 <td>
1254 <p>ACOS overloads the acos method for analysis objects.</p>
1255 </td>
1256 <td>
1257 <p>ao</p>
1258 </td>
1259 </tr>
1260 <!-- ao/angle -->
1261 <tr valign="top">
1262 <td bgcolor="#f3f4f5">
1263 <p><a href="matlab:doc('ao/angle')">angle</a></p>
1264 </td>
1265 <td bgcolor="#f3f4f5">
1266 <p>ANGLE overloads the angle operator for analysis objects.</p>
1267 </td>
1268 <td bgcolor="#f3f4f5">
1269 <p>ao</p>
1270 </td>
1271 </tr>
1272 <!-- ao/asin -->
1273 <tr valign="top">
1274 <td>
1275 <p><a href="matlab:doc('ao/asin')">asin</a></p>
1276 </td>
1277 <td>
1278 <p>ASIN overloads the asin method for analysis objects.</p>
1279 </td>
1280 <td>
1281 <p>ao</p>
1282 </td>
1283 </tr>
1284 <!-- ao/atan -->
1285 <tr valign="top">
1286 <td bgcolor="#f3f4f5">
1287 <p><a href="matlab:doc('ao/atan')">atan</a></p>
1288 </td>
1289 <td bgcolor="#f3f4f5">
1290 <p>ATAN overloads the atan method for analysis objects.</p>
1291 </td>
1292 <td bgcolor="#f3f4f5">
1293 <p>ao</p>
1294 </td>
1295 </tr>
1296 <!-- ao/bilinfit -->
1297 <tr valign="top">
1298 <td>
1299 <p><a href="matlab:doc('ao/bilinfit')">bilinfit</a></p>
1300 </td>
1301 <td>
1302 <p>BILINFIT is a linear fitting tool</p>
1303 </td>
1304 <td>
1305 <p>ao</p>
1306 </td>
1307 </tr>
1308 <!-- ao/cat -->
1309 <tr valign="top">
1310 <td bgcolor="#f3f4f5">
1311 <p><a href="matlab:doc('ao/cat')">cat</a></p>
1312 </td>
1313 <td bgcolor="#f3f4f5">
1314 <p>CAT concatenate AOs into a row vector.</p>
1315 </td>
1316 <td bgcolor="#f3f4f5">
1317 <p>ao</p>
1318 </td>
1319 </tr>
1320 <!-- ao/complex -->
1321 <tr valign="top">
1322 <td>
1323 <p><a href="matlab:doc('ao/complex')">complex</a></p>
1324 </td>
1325 <td>
1326 <p>COMPLEX overloads the complex operator for Analysis objects.</p>
1327 </td>
1328 <td>
1329 <p>ao</p>
1330 </td>
1331 </tr>
1332 <!-- ao/conj -->
1333 <tr valign="top">
1334 <td bgcolor="#f3f4f5">
1335 <p><a href="matlab:doc('ao/conj')">conj</a></p>
1336 </td>
1337 <td bgcolor="#f3f4f5">
1338 <p>CONJ overloads the conjugate operator for analysis objects.</p>
1339 </td>
1340 <td bgcolor="#f3f4f5">
1341 <p>ao</p>
1342 </td>
1343 </tr>
1344 <!-- ao/cos -->
1345 <tr valign="top">
1346 <td>
1347 <p><a href="matlab:doc('ao/cos')">cos</a></p>
1348 </td>
1349 <td>
1350 <p>COS overloads the cos method for analysis objects.</p>
1351 </td>
1352 <td>
1353 <p>ao</p>
1354 </td>
1355 </tr>
1356 <!-- ao/ctranspose -->
1357 <tr valign="top">
1358 <td bgcolor="#f3f4f5">
1359 <p><a href="matlab:doc('ao/ctranspose')">ctranspose</a></p>
1360 </td>
1361 <td bgcolor="#f3f4f5">
1362 <p>CTRANSPOSE overloads the ' operator for Analysis Objects.</p>
1363 </td>
1364 <td bgcolor="#f3f4f5">
1365 <p>ao</p>
1366 </td>
1367 </tr>
1368 <!-- ao/det -->
1369 <tr valign="top">
1370 <td>
1371 <p><a href="matlab:doc('ao/det')">det</a></p>
1372 </td>
1373 <td>
1374 <p>DET overloads the determinant function for analysis objects.</p>
1375 </td>
1376 <td>
1377 <p>ao</p>
1378 </td>
1379 </tr>
1380 <!-- ao/diag -->
1381 <tr valign="top">
1382 <td bgcolor="#f3f4f5">
1383 <p><a href="matlab:doc('ao/diag')">diag</a></p>
1384 </td>
1385 <td bgcolor="#f3f4f5">
1386 <p>DIAG overloads the diagonal operator for analysis objects.</p>
1387 </td>
1388 <td bgcolor="#f3f4f5">
1389 <p>ao</p>
1390 </td>
1391 </tr>
1392 <!-- ao/eig -->
1393 <tr valign="top">
1394 <td>
1395 <p><a href="matlab:doc('ao/eig')">eig</a></p>
1396 </td>
1397 <td>
1398 <p>EIG overloads the eigenvalues/eigenvectors function for analysis objects.</p>
1399 </td>
1400 <td>
1401 <p>ao</p>
1402 </td>
1403 </tr>
1404 <!-- ao/exp -->
1405 <tr valign="top">
1406 <td bgcolor="#f3f4f5">
1407 <p><a href="matlab:doc('ao/exp')">exp</a></p>
1408 </td>
1409 <td bgcolor="#f3f4f5">
1410 <p>EXP overloads the exp operator for analysis objects. Exponential.</p>
1411 </td>
1412 <td bgcolor="#f3f4f5">
1413 <p>ao</p>
1414 </td>
1415 </tr>
1416 <!-- ao/hypot -->
1417 <tr valign="top">
1418 <td>
1419 <p><a href="matlab:doc('ao/hypot')">hypot</a></p>
1420 </td>
1421 <td>
1422 <p>HYPOT overloads robust computation of the square root of the sum of squares for AOs.</p>
1423 </td>
1424 <td>
1425 <p>ao</p>
1426 </td>
1427 </tr>
1428 <!-- ao/imag -->
1429 <tr valign="top">
1430 <td bgcolor="#f3f4f5">
1431 <p><a href="matlab:doc('ao/imag')">imag</a></p>
1432 </td>
1433 <td bgcolor="#f3f4f5">
1434 <p>IMAG overloads the imaginary operator for analysis objects.</p>
1435 </td>
1436 <td bgcolor="#f3f4f5">
1437 <p>ao</p>
1438 </td>
1439 </tr>
1440 <!-- ao/inv -->
1441 <tr valign="top">
1442 <td>
1443 <p><a href="matlab:doc('ao/inv')">inv</a></p>
1444 </td>
1445 <td>
1446 <p>INV overloads the inverse function for asnalysis objects.</p>
1447 </td>
1448 <td>
1449 <p>ao</p>
1450 </td>
1451 </tr>
1452 <!-- ao/linfit -->
1453 <tr valign="top">
1454 <td bgcolor="#f3f4f5">
1455 <p><a href="matlab:doc('ao/linfit')">linfit</a></p>
1456 </td>
1457 <td bgcolor="#f3f4f5">
1458 <p>LINFIT is a linear fitting tool</p>
1459 </td>
1460 <td bgcolor="#f3f4f5">
1461 <p>ao</p>
1462 </td>
1463 </tr>
1464 <!-- ao/ln -->
1465 <tr valign="top">
1466 <td>
1467 <p><a href="matlab:doc('ao/ln')">ln</a></p>
1468 </td>
1469 <td>
1470 <p>LN overloads the log operator for analysis objects. Natural logarithm.</p>
1471 </td>
1472 <td>
1473 <p>ao</p>
1474 </td>
1475 </tr>
1476 <!-- ao/log -->
1477 <tr valign="top">
1478 <td bgcolor="#f3f4f5">
1479 <p><a href="matlab:doc('ao/log')">log</a></p>
1480 </td>
1481 <td bgcolor="#f3f4f5">
1482 <p>LOG overloads the log operator for analysis objects. Natural logarithm.</p>
1483 </td>
1484 <td bgcolor="#f3f4f5">
1485 <p>ao</p>
1486 </td>
1487 </tr>
1488 <!-- ao/log10 -->
1489 <tr valign="top">
1490 <td>
1491 <p><a href="matlab:doc('ao/log10')">log10</a></p>
1492 </td>
1493 <td>
1494 <p>LOG10 overloads the log10 operator for analysis objects. Common (base 10) logarithm.</p>
1495 </td>
1496 <td>
1497 <p>ao</p>
1498 </td>
1499 </tr>
1500 <!-- ao/lscov -->
1501 <tr valign="top">
1502 <td bgcolor="#f3f4f5">
1503 <p><a href="matlab:doc('ao/lscov')">lscov</a></p>
1504 </td>
1505 <td bgcolor="#f3f4f5">
1506 <p>LSCOV is a wrapper for MATLAB's lscov function.</p>
1507 </td>
1508 <td bgcolor="#f3f4f5">
1509 <p>ao</p>
1510 </td>
1511 </tr>
1512 <!-- ao/max -->
1513 <tr valign="top">
1514 <td>
1515 <p><a href="matlab:doc('ao/max')">max</a></p>
1516 </td>
1517 <td>
1518 <p>MAX computes the maximum value of the data in the AO.</p>
1519 </td>
1520 <td>
1521 <p>ao</p>
1522 </td>
1523 </tr>
1524 <!-- ao/mean -->
1525 <tr valign="top">
1526 <td bgcolor="#f3f4f5">
1527 <p><a href="matlab:doc('ao/mean')">mean</a></p>
1528 </td>
1529 <td bgcolor="#f3f4f5">
1530 <p>MEAN computes the mean value of the data in the AO.</p>
1531 </td>
1532 <td bgcolor="#f3f4f5">
1533 <p>ao</p>
1534 </td>
1535 </tr>
1536 <!-- ao/median -->
1537 <tr valign="top">
1538 <td>
1539 <p><a href="matlab:doc('ao/median')">median</a></p>
1540 </td>
1541 <td>
1542 <p>MEDIAN computes the median value of the data in the AO.</p>
1543 </td>
1544 <td>
1545 <p>ao</p>
1546 </td>
1547 </tr>
1548 <!-- ao/min -->
1549 <tr valign="top">
1550 <td bgcolor="#f3f4f5">
1551 <p><a href="matlab:doc('ao/min')">min</a></p>
1552 </td>
1553 <td bgcolor="#f3f4f5">
1554 <p>MIN computes the minimum value of the data in the AO.</p>
1555 </td>
1556 <td bgcolor="#f3f4f5">
1557 <p>ao</p>
1558 </td>
1559 </tr>
1560 <!-- ao/mode -->
1561 <tr valign="top">
1562 <td>
1563 <p><a href="matlab:doc('ao/mode')">mode</a></p>
1564 </td>
1565 <td>
1566 <p>MODE computes the modal value of the data in the AO.</p>
1567 </td>
1568 <td>
1569 <p>ao</p>
1570 </td>
1571 </tr>
1572 <!-- ao/norm -->
1573 <tr valign="top">
1574 <td bgcolor="#f3f4f5">
1575 <p><a href="matlab:doc('ao/norm')">norm</a></p>
1576 </td>
1577 <td bgcolor="#f3f4f5">
1578 <p>NORM overloads the norm operator for Analysis Objects.</p>
1579 </td>
1580 <td bgcolor="#f3f4f5">
1581 <p>ao</p>
1582 </td>
1583 </tr>
1584 <!-- ao/offset -->
1585 <tr valign="top">
1586 <td>
1587 <p><a href="matlab:doc('ao/offset')">offset</a></p>
1588 </td>
1589 <td>
1590 <p>OFFSET adds an offset to the data in the AO.</p>
1591 </td>
1592 <td>
1593 <p>ao</p>
1594 </td>
1595 </tr>
1596 <!-- ao/optSubtraction -->
1597 <tr valign="top">
1598 <td bgcolor="#f3f4f5">
1599 <p><a href="matlab:doc('ao/optSubtraction')">optSubtraction</a></p>
1600 </td>
1601 <td bgcolor="#f3f4f5">
1602 <p>SPSDSUBTRACTION makes a sPSD-weighted least-square iterative fit</p>
1603 </td>
1604 <td bgcolor="#f3f4f5">
1605 <p>ao</p>
1606 </td>
1607 </tr>
1608 <!-- ao/phase -->
1609 <tr valign="top">
1610 <td>
1611 <p><a href="matlab:doc('ao/phase')">phase</a></p>
1612 </td>
1613 <td>
1614 <p>PHASE is the phase operator for analysis objects.</p>
1615 </td>
1616 <td>
1617 <p>ao</p>
1618 </td>
1619 </tr>
1620 <!-- ao/polynomfit -->
1621 <tr valign="top">
1622 <td bgcolor="#f3f4f5">
1623 <p><a href="matlab:doc('ao/polynomfit')">polynomfit</a></p>
1624 </td>
1625 <td bgcolor="#f3f4f5">
1626 <p>POLYNOMFIT is a polynomial fitting tool</p>
1627 </td>
1628 <td bgcolor="#f3f4f5">
1629 <p>ao</p>
1630 </td>
1631 </tr>
1632 <!-- ao/quasiSweptSine -->
1633 <tr valign="top">
1634 <td>
1635 <p><a href="matlab:doc('ao/quasiSweptSine')">quasiSweptSine</a></p>
1636 </td>
1637 <td>
1638 <p>QUASISWEPTSING computes a transfer function from swept-sine measurements</p>
1639 </td>
1640 <td>
1641 <p>ao</p>
1642 </td>
1643 </tr>
1644 <!-- ao/real -->
1645 <tr valign="top">
1646 <td bgcolor="#f3f4f5">
1647 <p><a href="matlab:doc('ao/real')">real</a></p>
1648 </td>
1649 <td bgcolor="#f3f4f5">
1650 <p>REAL overloads the real operator for analysis objects.</p>
1651 </td>
1652 <td bgcolor="#f3f4f5">
1653 <p>ao</p>
1654 </td>
1655 </tr>
1656 <!-- ao/rotate -->
1657 <tr valign="top">
1658 <td>
1659 <p><a href="matlab:doc('ao/rotate')">rotate</a></p>
1660 </td>
1661 <td>
1662 <p>ROTATE applies rotation factor to AOs</p>
1663 </td>
1664 <td>
1665 <p>ao</p>
1666 </td>
1667 </tr>
1668 <!-- ao/round -->
1669 <tr valign="top">
1670 <td bgcolor="#f3f4f5">
1671 <p><a href="matlab:doc('ao/round')">round</a></p>
1672 </td>
1673 <td bgcolor="#f3f4f5">
1674 <p>ROUND overloads the Round method for analysis objects.</p>
1675 </td>
1676 <td bgcolor="#f3f4f5">
1677 <p>ao</p>
1678 </td>
1679 </tr>
1680 <!-- ao/scale -->
1681 <tr valign="top">
1682 <td>
1683 <p><a href="matlab:doc('ao/scale')">scale</a></p>
1684 </td>
1685 <td>
1686 <p>SCALE scales the data in the AO by the specified factor.</p>
1687 </td>
1688 <td>
1689 <p>ao</p>
1690 </td>
1691 </tr>
1692 <!-- ao/sign -->
1693 <tr valign="top">
1694 <td bgcolor="#f3f4f5">
1695 <p><a href="matlab:doc('ao/sign')">sign</a></p>
1696 </td>
1697 <td bgcolor="#f3f4f5">
1698 <p>SIGN overloads the sign operator for analysis objects.</p>
1699 </td>
1700 <td bgcolor="#f3f4f5">
1701 <p>ao</p>
1702 </td>
1703 </tr>
1704 <!-- ao/sin -->
1705 <tr valign="top">
1706 <td>
1707 <p><a href="matlab:doc('ao/sin')">sin</a></p>
1708 </td>
1709 <td>
1710 <p>SIN overloads the sin method for analysis objects.</p>
1711 </td>
1712 <td>
1713 <p>ao</p>
1714 </td>
1715 </tr>
1716 <!-- ao/sort -->
1717 <tr valign="top">
1718 <td bgcolor="#f3f4f5">
1719 <p><a href="matlab:doc('ao/sort')">sort</a></p>
1720 </td>
1721 <td bgcolor="#f3f4f5">
1722 <p>SORT the values in the AO.</p>
1723 </td>
1724 <td bgcolor="#f3f4f5">
1725 <p>ao</p>
1726 </td>
1727 </tr>
1728 <!-- ao/spsdSubtraction -->
1729 <tr valign="top">
1730 <td>
1731 <p><a href="matlab:doc('ao/spsdSubtraction')">spsdSubtraction</a></p>
1732 </td>
1733 <td>
1734 <p>SPSDSUBTRACTION makes a sPSD-weighted least-square iterative fit</p>
1735 </td>
1736 <td>
1737 <p>ao</p>
1738 </td>
1739 </tr>
1740 <!-- ao/sqrt -->
1741 <tr valign="top">
1742 <td bgcolor="#f3f4f5">
1743 <p><a href="matlab:doc('ao/sqrt')">sqrt</a></p>
1744 </td>
1745 <td bgcolor="#f3f4f5">
1746 <p>SQRT computes the square root of the data in the AO.</p>
1747 </td>
1748 <td bgcolor="#f3f4f5">
1749 <p>ao</p>
1750 </td>
1751 </tr>
1752 <!-- ao/std -->
1753 <tr valign="top">
1754 <td>
1755 <p><a href="matlab:doc('ao/std')">std</a></p>
1756 </td>
1757 <td>
1758 <p>STD computes the standard deviation of the data in the AO.</p>
1759 </td>
1760 <td>
1761 <p>ao</p>
1762 </td>
1763 </tr>
1764 <!-- ao/sum -->
1765 <tr valign="top">
1766 <td bgcolor="#f3f4f5">
1767 <p><a href="matlab:doc('ao/sum')">sum</a></p>
1768 </td>
1769 <td bgcolor="#f3f4f5">
1770 <p>SUM computes the sum of the data in the AO.</p>
1771 </td>
1772 <td bgcolor="#f3f4f5">
1773 <p>ao</p>
1774 </td>
1775 </tr>
1776 <!-- ao/sumjoin -->
1777 <tr valign="top">
1778 <td>
1779 <p><a href="matlab:doc('ao/sumjoin')">sumjoin</a></p>
1780 </td>
1781 <td>
1782 <p>SUMJOIN sums time-series signals togther</p>
1783 </td>
1784 <td>
1785 <p>ao</p>
1786 </td>
1787 </tr>
1788 <!-- ao/svd -->
1789 <tr valign="top">
1790 <td bgcolor="#f3f4f5">
1791 <p><a href="matlab:doc('ao/svd')">svd</a></p>
1792 </td>
1793 <td bgcolor="#f3f4f5">
1794 <p>SVD overloads the svd (singular value decomposition) function for analysis objects.</p>
1795 </td>
1796 <td bgcolor="#f3f4f5">
1797 <p>ao</p>
1798 </td>
1799 </tr>
1800 <!-- ao/svd_fit -->
1801 <tr valign="top">
1802 <td>
1803 <p><a href="matlab:doc('ao/svd_fit')">svd_fit</a></p>
1804 </td>
1805 <td>
1806 <p>SVD_FIT estimates parameters for a linear model using SVD</p>
1807 </td>
1808 <td>
1809 <p>ao</p>
1810 </td>
1811 </tr>
1812 <!-- ao/tan -->
1813 <tr valign="top">
1814 <td bgcolor="#f3f4f5">
1815 <p><a href="matlab:doc('ao/tan')">tan</a></p>
1816 </td>
1817 <td bgcolor="#f3f4f5">
1818 <p>TAN overloads the tan method for analysis objects.</p>
1819 </td>
1820 <td bgcolor="#f3f4f5">
1821 <p>ao</p>
1822 </td>
1823 </tr>
1824 <!-- ao/transpose -->
1825 <tr valign="top">
1826 <td>
1827 <p><a href="matlab:doc('ao/transpose')">transpose</a></p>
1828 </td>
1829 <td>
1830 <p>TRANSPOSE overloads the .' operator for Analysis Objects.</p>
1831 </td>
1832 <td>
1833 <p>ao</p>
1834 </td>
1835 </tr>
1836 <!-- ao/uminus -->
1837 <tr valign="top">
1838 <td bgcolor="#f3f4f5">
1839 <p><a href="matlab:doc('ao/uminus')">uminus</a></p>
1840 </td>
1841 <td bgcolor="#f3f4f5">
1842 <p>UMINUS overloads the uminus operator for analysis objects.</p>
1843 </td>
1844 <td bgcolor="#f3f4f5">
1845 <p>ao</p>
1846 </td>
1847 </tr>
1848 <!-- ao/unwrap -->
1849 <tr valign="top">
1850 <td>
1851 <p><a href="matlab:doc('ao/unwrap')">unwrap</a></p>
1852 </td>
1853 <td>
1854 <p>UNWRAP overloads the unwrap operator for analysis objects.</p>
1855 </td>
1856 <td>
1857 <p>ao</p>
1858 </td>
1859 </tr>
1860 <!-- ao/var -->
1861 <tr valign="top">
1862 <td bgcolor="#f3f4f5">
1863 <p><a href="matlab:doc('ao/var')">var</a></p>
1864 </td>
1865 <td bgcolor="#f3f4f5">
1866 <p>VAR computes the variance of the data in the AO.</p>
1867 </td>
1868 <td bgcolor="#f3f4f5">
1869 <p>ao</p>
1870 </td>
1871 </tr>
1872 </tbody>
1873 </table>
1874 <!-- ===== Back to Top of Methods ===== -->
1875 <a href="#top_methods">
1876 <img src="doc_to_top_up.gif" border="0" align="bottom" alt="Back to Top of Section"/>
1877 Back to Top of Section
1878 </a>
1879
1880 </p>
1881
1882 <!-- ===== Methods Category: Output ===== -->
1883 <h3 class="title"><a name="output"/>Output</h3>
1884 <p>
1885 <table cellspacing="0" class="body" cellpadding="2" border="0" width="80%">
1886 <colgroup>
1887 <col width="15%"/>
1888 <col width="73%"/>
1889 <col width="12%"/>
1890 </colgroup>
1891 <thead>
1892 <tr valign="top">
1893 <th class="categorylist">Methods</th>
1894 <th class="categorylist">Description</th>
1895 <th class="categorylist">Defined in class</th>
1896 </tr>
1897 </thead>
1898 <tbody>
1899 <!-- ao/display -->
1900 <tr valign="top">
1901 <td bgcolor="#f3f4f5">
1902 <p><a href="matlab:doc('ao/display')">display</a></p>
1903 </td>
1904 <td bgcolor="#f3f4f5">
1905 <p>DISPLAY implement terminal display for analysis object.</p>
1906 </td>
1907 <td bgcolor="#f3f4f5">
1908 <p>ao</p>
1909 </td>
1910 </tr>
1911 <!-- ao/export -->
1912 <tr valign="top">
1913 <td>
1914 <p><a href="matlab:doc('ao/export')">export</a></p>
1915 </td>
1916 <td>
1917 <p>EXPORT export the data of an analysis object to a text file.</p>
1918 </td>
1919 <td>
1920 <p>ao</p>
1921 </td>
1922 </tr>
1923 <!-- ao/gnuplot -->
1924 <tr valign="top">
1925 <td bgcolor="#f3f4f5">
1926 <p><a href="matlab:doc('ao/gnuplot')">gnuplot</a></p>
1927 </td>
1928 <td bgcolor="#f3f4f5">
1929 <p>GNUPLOT a gnuplot interface for AOs.</p>
1930 </td>
1931 <td bgcolor="#f3f4f5">
1932 <p>ao</p>
1933 </td>
1934 </tr>
1935 <!-- ao/iplot -->
1936 <tr valign="top">
1937 <td>
1938 <p><a href="matlab:doc('ao/iplot')">iplot</a></p>
1939 </td>
1940 <td>
1941 <p>IPLOT provides an intelligent plotting tool for LTPDA.</p>
1942 </td>
1943 <td>
1944 <p>ao</p>
1945 </td>
1946 </tr>
1947 <!-- ao/iplotyy -->
1948 <tr valign="top">
1949 <td bgcolor="#f3f4f5">
1950 <p><a href="matlab:doc('ao/iplotyy')">iplotyy</a></p>
1951 </td>
1952 <td bgcolor="#f3f4f5">
1953 <p>IPLOT provides an intelligent plotting tool for LTPDA.</p>
1954 </td>
1955 <td bgcolor="#f3f4f5">
1956 <p>ao</p>
1957 </td>
1958 </tr>
1959 <!-- ao/table -->
1960 <tr valign="top">
1961 <td>
1962 <p><a href="matlab:doc('ao/table')">table</a></p>
1963 </td>
1964 <td>
1965 <p>TABLE display the data from the AO in a table.</p>
1966 </td>
1967 <td>
1968 <p>ao</p>
1969 </td>
1970 </tr>
1971 <!-- ltpda_uo/save -->
1972 <tr valign="top">
1973 <td bgcolor="#f3f4f5">
1974 <p><a href="matlab:doc('ao/save')">save</a></p>
1975 </td>
1976 <td bgcolor="#f3f4f5">
1977 <p>SAVE overloads save operator for ltpda objects.</p>
1978 </td>
1979 <td bgcolor="#f3f4f5">
1980 <p>ltpda_uo</p>
1981 </td>
1982 </tr>
1983 <!-- ltpda_uoh/report -->
1984 <tr valign="top">
1985 <td>
1986 <p><a href="matlab:doc('ao/report')">report</a></p>
1987 </td>
1988 <td>
1989 <p>REPORT generates an HTML report about the input objects.</p>
1990 </td>
1991 <td>
1992 <p>ltpda_uoh</p>
1993 </td>
1994 </tr>
1995 <!-- ltpda_uoh/viewHistory -->
1996 <tr valign="top">
1997 <td bgcolor="#f3f4f5">
1998 <p><a href="matlab:doc('ao/viewHistory')">viewHistory</a></p>
1999 </td>
2000 <td bgcolor="#f3f4f5">
2001 <p>VIEWHISTORY Displays the history of an object as a dot-view or a MATLAB figure.</p>
2002 </td>
2003 <td bgcolor="#f3f4f5">
2004 <p>ltpda_uoh</p>
2005 </td>
2006 </tr>
2007 </tbody>
2008 </table>
2009 <!-- ===== Back to Top of Methods ===== -->
2010 <a href="#top_methods">
2011 <img src="doc_to_top_up.gif" border="0" align="bottom" alt="Back to Top of Section"/>
2012 Back to Top of Section
2013 </a>
2014
2015 </p>
2016
2017 <!-- ===== Methods Category: Relational_Operator ===== -->
2018 <h3 class="title"><a name="relational_operator"/>Relational Operator</h3>
2019 <p>
2020 <table cellspacing="0" class="body" cellpadding="2" border="0" width="80%">
2021 <colgroup>
2022 <col width="15%"/>
2023 <col width="73%"/>
2024 <col width="12%"/>
2025 </colgroup>
2026 <thead>
2027 <tr valign="top">
2028 <th class="categorylist">Methods</th>
2029 <th class="categorylist">Description</th>
2030 <th class="categorylist">Defined in class</th>
2031 </tr>
2032 </thead>
2033 <tbody>
2034 <!-- ao/ge -->
2035 <tr valign="top">
2036 <td bgcolor="#f3f4f5">
2037 <p><a href="matlab:doc('ao/ge')">ge</a></p>
2038 </td>
2039 <td bgcolor="#f3f4f5">
2040 <p>GE overloads >= operator for analysis objects. Compare the y-axis values.</p>
2041 </td>
2042 <td bgcolor="#f3f4f5">
2043 <p>ao</p>
2044 </td>
2045 </tr>
2046 <!-- ao/gt -->
2047 <tr valign="top">
2048 <td>
2049 <p><a href="matlab:doc('ao/gt')">gt</a></p>
2050 </td>
2051 <td>
2052 <p>GT overloads > operator for analysis objects. Compare the y-axis values.</p>
2053 </td>
2054 <td>
2055 <p>ao</p>
2056 </td>
2057 </tr>
2058 <!-- ao/le -->
2059 <tr valign="top">
2060 <td bgcolor="#f3f4f5">
2061 <p><a href="matlab:doc('ao/le')">le</a></p>
2062 </td>
2063 <td bgcolor="#f3f4f5">
2064 <p>LE overloads <= operator for analysis objects. Compare the y-axis values.</p>
2065 </td>
2066 <td bgcolor="#f3f4f5">
2067 <p>ao</p>
2068 </td>
2069 </tr>
2070 <!-- ao/lt -->
2071 <tr valign="top">
2072 <td>
2073 <p><a href="matlab:doc('ao/lt')">lt</a></p>
2074 </td>
2075 <td>
2076 <p>LT overloads < operator for analysis objects. Compare the y-axis values.</p>
2077 </td>
2078 <td>
2079 <p>ao</p>
2080 </td>
2081 </tr>
2082 <!-- ltpda_obj/eq -->
2083 <tr valign="top">
2084 <td bgcolor="#f3f4f5">
2085 <p><a href="matlab:doc('ao/eq')">eq</a></p>
2086 </td>
2087 <td bgcolor="#f3f4f5">
2088 <p>EQ overloads the == operator for ltpda objects.</p>
2089 </td>
2090 <td bgcolor="#f3f4f5">
2091 <p>ltpda_obj</p>
2092 </td>
2093 </tr>
2094 <!-- ltpda_obj/ne -->
2095 <tr valign="top">
2096 <td>
2097 <p><a href="matlab:doc('ao/ne')">ne</a></p>
2098 </td>
2099 <td>
2100 <p>NE overloads the ~= operator for ltpda objects.</p>
2101 </td>
2102 <td>
2103 <p>ltpda_obj</p>
2104 </td>
2105 </tr>
2106 </tbody>
2107 </table>
2108 <!-- ===== Back to Top of Methods ===== -->
2109 <a href="#top_methods">
2110 <img src="doc_to_top_up.gif" border="0" align="bottom" alt="Back to Top of Section"/>
2111 Back to Top of Section
2112 </a>
2113
2114 </p>
2115
2116 <!-- ===== Methods Category: Signal_Processing ===== -->
2117 <h3 class="title"><a name="signal_processing"/>Signal Processing</h3>
2118 <p>
2119 <table cellspacing="0" class="body" cellpadding="2" border="0" width="80%">
2120 <colgroup>
2121 <col width="15%"/>
2122 <col width="73%"/>
2123 <col width="12%"/>
2124 </colgroup>
2125 <thead>
2126 <tr valign="top">
2127 <th class="categorylist">Methods</th>
2128 <th class="categorylist">Description</th>
2129 <th class="categorylist">Defined in class</th>
2130 </tr>
2131 </thead>
2132 <tbody>
2133 <!-- ao/average -->
2134 <tr valign="top">
2135 <td bgcolor="#f3f4f5">
2136 <p><a href="matlab:doc('ao/average')">average</a></p>
2137 </td>
2138 <td bgcolor="#f3f4f5">
2139 <p>AVERAGE averages aos point-by-point</p>
2140 </td>
2141 <td bgcolor="#f3f4f5">
2142 <p>ao</p>
2143 </td>
2144 </tr>
2145 <!-- ao/bicohere -->
2146 <tr valign="top">
2147 <td>
2148 <p><a href="matlab:doc('ao/bicohere')">bicohere</a></p>
2149 </td>
2150 <td>
2151 <p>BICOHERE computes the bicoherence of two input time-series</p>
2152 </td>
2153 <td>
2154 <p>ao</p>
2155 </td>
2156 </tr>
2157 <!-- ao/bin_data -->
2158 <tr valign="top">
2159 <td bgcolor="#f3f4f5">
2160 <p><a href="matlab:doc('ao/bin_data')">bin_data</a></p>
2161 </td>
2162 <td bgcolor="#f3f4f5">
2163 <p>BIN_DATA rebins aos data, on logarithmic scale, linear scale, or arbitrarly chosen.</p>
2164 </td>
2165 <td bgcolor="#f3f4f5">
2166 <p>ao</p>
2167 </td>
2168 </tr>
2169 <!-- ao/buildWhitener1D -->
2170 <tr valign="top">
2171 <td>
2172 <p><a href="matlab:doc('ao/buildWhitener1D')">buildWhitener1D</a></p>
2173 </td>
2174 <td>
2175 <p>BUILDWHITENER1D builds a whitening filter based on the input frequency-series.</p>
2176 </td>
2177 <td>
2178 <p>ao</p>
2179 </td>
2180 </tr>
2181 <!-- ao/cohere -->
2182 <tr valign="top">
2183 <td bgcolor="#f3f4f5">
2184 <p><a href="matlab:doc('ao/cohere')">cohere</a></p>
2185 </td>
2186 <td bgcolor="#f3f4f5">
2187 <p>COHERE estimates the coherence between time-series objects</p>
2188 </td>
2189 <td bgcolor="#f3f4f5">
2190 <p>ao</p>
2191 </td>
2192 </tr>
2193 <!-- ao/compute -->
2194 <tr valign="top">
2195 <td>
2196 <p><a href="matlab:doc('ao/compute')">compute</a></p>
2197 </td>
2198 <td>
2199 <p>COMPUTE performs the given operations on the input AOs.</p>
2200 </td>
2201 <td>
2202 <p>ao</p>
2203 </td>
2204 </tr>
2205 <!-- ao/confint -->
2206 <tr valign="top">
2207 <td bgcolor="#f3f4f5">
2208 <p><a href="matlab:doc('ao/confint')">confint</a></p>
2209 </td>
2210 <td bgcolor="#f3f4f5">
2211 <p>CONFINT Calculates confidence levels and variance for psd, lpsd, cohere, lcohere and curvefit parameters</p>
2212 </td>
2213 <td bgcolor="#f3f4f5">
2214 <p>ao</p>
2215 </td>
2216 </tr>
2217 <!-- ao/consolidate -->
2218 <tr valign="top">
2219 <td>
2220 <p><a href="matlab:doc('ao/consolidate')">consolidate</a></p>
2221 </td>
2222 <td>
2223 <p>CONSOLIDATE resamples all input AOs onto the same time grid.</p>
2224 </td>
2225 <td>
2226 <p>ao</p>
2227 </td>
2228 </tr>
2229 <!-- ao/conv -->
2230 <tr valign="top">
2231 <td bgcolor="#f3f4f5">
2232 <p><a href="matlab:doc('ao/conv')">conv</a></p>
2233 </td>
2234 <td bgcolor="#f3f4f5">
2235 <p>CONV vector convolution.</p>
2236 </td>
2237 <td bgcolor="#f3f4f5">
2238 <p>ao</p>
2239 </td>
2240 </tr>
2241 <!-- ao/corr -->
2242 <tr valign="top">
2243 <td>
2244 <p><a href="matlab:doc('ao/corr')">corr</a></p>
2245 </td>
2246 <td>
2247 <p>CORR estimate linear correlation coefficients.</p>
2248 </td>
2249 <td>
2250 <p>ao</p>
2251 </td>
2252 </tr>
2253 <!-- ao/cov -->
2254 <tr valign="top">
2255 <td bgcolor="#f3f4f5">
2256 <p><a href="matlab:doc('ao/cov')">cov</a></p>
2257 </td>
2258 <td bgcolor="#f3f4f5">
2259 <p>COV estimate covariance of data streams.</p>
2260 </td>
2261 <td bgcolor="#f3f4f5">
2262 <p>ao</p>
2263 </td>
2264 </tr>
2265 <!-- ao/cpsd -->
2266 <tr valign="top">
2267 <td>
2268 <p><a href="matlab:doc('ao/cpsd')">cpsd</a></p>
2269 </td>
2270 <td>
2271 <p>CPSD estimates the cross-spectral density between time-series objects</p>
2272 </td>
2273 <td>
2274 <p>ao</p>
2275 </td>
2276 </tr>
2277 <!-- ao/crbound -->
2278 <tr valign="top">
2279 <td bgcolor="#f3f4f5">
2280 <p><a href="matlab:doc('ao/crbound')">crbound</a></p>
2281 </td>
2282 <td bgcolor="#f3f4f5">
2283 <p>CRBOUND computes the inverse of the Fisher Matrix</p>
2284 </td>
2285 <td bgcolor="#f3f4f5">
2286 <p>ao</p>
2287 </td>
2288 </tr>
2289 <!-- ao/delay -->
2290 <tr valign="top">
2291 <td>
2292 <p><a href="matlab:doc('ao/delay')">delay</a></p>
2293 </td>
2294 <td>
2295 <p>DELAY delays a time-series using various methods.</p>
2296 </td>
2297 <td>
2298 <p>ao</p>
2299 </td>
2300 </tr>
2301 <!-- ao/delayEstimate -->
2302 <tr valign="top">
2303 <td bgcolor="#f3f4f5">
2304 <p><a href="matlab:doc('ao/delayEstimate')">delayEstimate</a></p>
2305 </td>
2306 <td bgcolor="#f3f4f5">
2307 <p>DELAYESTIMATE estimates the delay between two AOs</p>
2308 </td>
2309 <td bgcolor="#f3f4f5">
2310 <p>ao</p>
2311 </td>
2312 </tr>
2313 <!-- ao/detrend -->
2314 <tr valign="top">
2315 <td>
2316 <p><a href="matlab:doc('ao/detrend')">detrend</a></p>
2317 </td>
2318 <td>
2319 <p>DETREND detrends the input analysis object using a polynomial of degree N.</p>
2320 </td>
2321 <td>
2322 <p>ao</p>
2323 </td>
2324 </tr>
2325 <!-- ao/dft -->
2326 <tr valign="top">
2327 <td bgcolor="#f3f4f5">
2328 <p><a href="matlab:doc('ao/dft')">dft</a></p>
2329 </td>
2330 <td bgcolor="#f3f4f5">
2331 <p>DFT computes the DFT of the input time-series at the requested frequencies.</p>
2332 </td>
2333 <td bgcolor="#f3f4f5">
2334 <p>ao</p>
2335 </td>
2336 </tr>
2337 <!-- ao/diff -->
2338 <tr valign="top">
2339 <td>
2340 <p><a href="matlab:doc('ao/diff')">diff</a></p>
2341 </td>
2342 <td>
2343 <p>DIFF differentiates the data in AO.</p>
2344 </td>
2345 <td>
2346 <p>ao</p>
2347 </td>
2348 </tr>
2349 <!-- ao/dopplercorr -->
2350 <tr valign="top">
2351 <td bgcolor="#f3f4f5">
2352 <p><a href="matlab:doc('ao/dopplercorr')">dopplercorr</a></p>
2353 </td>
2354 <td bgcolor="#f3f4f5">
2355 <p>Dopplercorr coorects data for Doppler shift</p>
2356 </td>
2357 <td bgcolor="#f3f4f5">
2358 <p>ao</p>
2359 </td>
2360 </tr>
2361 <!-- ao/downsample -->
2362 <tr valign="top">
2363 <td>
2364 <p><a href="matlab:doc('ao/downsample')">downsample</a></p>
2365 </td>
2366 <td>
2367 <p>DOWNSAMPLE AOs containing time-series data.</p>
2368 </td>
2369 <td>
2370 <p>ao</p>
2371 </td>
2372 </tr>
2373 <!-- ao/dropduplicates -->
2374 <tr valign="top">
2375 <td bgcolor="#f3f4f5">
2376 <p><a href="matlab:doc('ao/dropduplicates')">dropduplicates</a></p>
2377 </td>
2378 <td bgcolor="#f3f4f5">
2379 <p>DROPDUPLICATES drops all duplicate samples in time-series AOs.</p>
2380 </td>
2381 <td bgcolor="#f3f4f5">
2382 <p>ao</p>
2383 </td>
2384 </tr>
2385 <!-- ao/dsmean -->
2386 <tr valign="top">
2387 <td>
2388 <p><a href="matlab:doc('ao/dsmean')">dsmean</a></p>
2389 </td>
2390 <td>
2391 <p>DSMEAN performs a simple downsampling by taking the mean of every N samples.</p>
2392 </td>
2393 <td>
2394 <p>ao</p>
2395 </td>
2396 </tr>
2397 <!-- ao/eqmotion -->
2398 <tr valign="top">
2399 <td bgcolor="#f3f4f5">
2400 <p><a href="matlab:doc('ao/eqmotion')">eqmotion</a></p>
2401 </td>
2402 <td bgcolor="#f3f4f5">
2403 <p>EQMOTION solves numerically a given linear equation of motion</p>
2404 </td>
2405 <td bgcolor="#f3f4f5">
2406 <p>ao</p>
2407 </td>
2408 </tr>
2409 <!-- ao/evaluateModel -->
2410 <tr valign="top">
2411 <td>
2412 <p><a href="matlab:doc('ao/evaluateModel')">evaluateModel</a></p>
2413 </td>
2414 <td>
2415 <p>EVALUATEMODEL evaluate a curvefit model.</p>
2416 </td>
2417 <td>
2418 <p>ao</p>
2419 </td>
2420 </tr>
2421 <!-- ao/fft -->
2422 <tr valign="top">
2423 <td bgcolor="#f3f4f5">
2424 <p><a href="matlab:doc('ao/fft')">fft</a></p>
2425 </td>
2426 <td bgcolor="#f3f4f5">
2427 <p>FFT overloads the fft method for Analysis objects.</p>
2428 </td>
2429 <td bgcolor="#f3f4f5">
2430 <p>ao</p>
2431 </td>
2432 </tr>
2433 <!-- ao/fftfilt -->
2434 <tr valign="top">
2435 <td>
2436 <p><a href="matlab:doc('ao/fftfilt')">fftfilt</a></p>
2437 </td>
2438 <td>
2439 <p>FFTFILT overrides the fft filter function for analysis objects.</p>
2440 </td>
2441 <td>
2442 <p>ao</p>
2443 </td>
2444 </tr>
2445 <!-- ao/filtSubtract -->
2446 <tr valign="top">
2447 <td bgcolor="#f3f4f5">
2448 <p><a href="matlab:doc('ao/filtSubtract')">filtSubtract</a></p>
2449 </td>
2450 <td bgcolor="#f3f4f5">
2451 <p>FILTSUBTRACT subtracts a frequency dependent noise contribution from an input ao.</p>
2452 </td>
2453 <td bgcolor="#f3f4f5">
2454 <p>ao</p>
2455 </td>
2456 </tr>
2457 <!-- ao/filter -->
2458 <tr valign="top">
2459 <td>
2460 <p><a href="matlab:doc('ao/filter')">filter</a></p>
2461 </td>
2462 <td>
2463 <p>FILTER overrides the filter function for analysis objects.</p>
2464 </td>
2465 <td>
2466 <p>ao</p>
2467 </td>
2468 </tr>
2469 <!-- ao/filtfilt -->
2470 <tr valign="top">
2471 <td bgcolor="#f3f4f5">
2472 <p><a href="matlab:doc('ao/filtfilt')">filtfilt</a></p>
2473 </td>
2474 <td bgcolor="#f3f4f5">
2475 <p>FILTFILT overrides the filtfilt function for analysis objects.</p>
2476 </td>
2477 <td bgcolor="#f3f4f5">
2478 <p>ao</p>
2479 </td>
2480 </tr>
2481 <!-- ao/firwhiten -->
2482 <tr valign="top">
2483 <td>
2484 <p><a href="matlab:doc('ao/firwhiten')">firwhiten</a></p>
2485 </td>
2486 <td>
2487 <p>FIRWHITEN whitens the input time-series by building an FIR whitening filter.</p>
2488 </td>
2489 <td>
2490 <p>ao</p>
2491 </td>
2492 </tr>
2493 <!-- ao/fixfs -->
2494 <tr valign="top">
2495 <td bgcolor="#f3f4f5">
2496 <p><a href="matlab:doc('ao/fixfs')">fixfs</a></p>
2497 </td>
2498 <td bgcolor="#f3f4f5">
2499 <p>FIXFS resamples the input time-series to have a fixed sample rate.</p>
2500 </td>
2501 <td bgcolor="#f3f4f5">
2502 <p>ao</p>
2503 </td>
2504 </tr>
2505 <!-- ao/fngen -->
2506 <tr valign="top">
2507 <td>
2508 <p><a href="matlab:doc('ao/fngen')">fngen</a></p>
2509 </td>
2510 <td>
2511 <p>FNGEN creates an arbitrarily long time-series based on the input PSD.</p>
2512 </td>
2513 <td>
2514 <p>ao</p>
2515 </td>
2516 </tr>
2517 <!-- ao/gapfilling -->
2518 <tr valign="top">
2519 <td bgcolor="#f3f4f5">
2520 <p><a href="matlab:doc('ao/gapfilling')">gapfilling</a></p>
2521 </td>
2522 <td bgcolor="#f3f4f5">
2523 <p>GAPFILLING fills possible gaps in data.</p>
2524 </td>
2525 <td bgcolor="#f3f4f5">
2526 <p>ao</p>
2527 </td>
2528 </tr>
2529 <!-- ao/gapfillingoptim -->
2530 <tr valign="top">
2531 <td>
2532 <p><a href="matlab:doc('ao/gapfillingoptim')">gapfillingoptim</a></p>
2533 </td>
2534 <td>
2535 <p>GAPFILLINGOPTIM fills possible gaps in data.</p>
2536 </td>
2537 <td>
2538 <p>ao</p>
2539 </td>
2540 </tr>
2541 <!-- ao/getdof -->
2542 <tr valign="top">
2543 <td bgcolor="#f3f4f5">
2544 <p><a href="matlab:doc('ao/getdof')">getdof</a></p>
2545 </td>
2546 <td bgcolor="#f3f4f5">
2547 <p>GETDOF Calculates degrees of freedom for psd, lpsd, cohere and lcohere</p>
2548 </td>
2549 <td bgcolor="#f3f4f5">
2550 <p>ao</p>
2551 </td>
2552 </tr>
2553 <!-- ao/heterodyne -->
2554 <tr valign="top">
2555 <td>
2556 <p><a href="matlab:doc('ao/heterodyne')">heterodyne</a></p>
2557 </td>
2558 <td>
2559 <p>HETERODYNE heterodynes time-series.</p>
2560 </td>
2561 <td>
2562 <p>ao</p>
2563 </td>
2564 </tr>
2565 <!-- ao/hist -->
2566 <tr valign="top">
2567 <td bgcolor="#f3f4f5">
2568 <p><a href="matlab:doc('ao/hist')">hist</a></p>
2569 </td>
2570 <td bgcolor="#f3f4f5">
2571 <p>HIST overloads the histogram function (hist) of MATLAB for Analysis Objects.</p>
2572 </td>
2573 <td bgcolor="#f3f4f5">
2574 <p>ao</p>
2575 </td>
2576 </tr>
2577 <!-- ao/ifft -->
2578 <tr valign="top">
2579 <td>
2580 <p><a href="matlab:doc('ao/ifft')">ifft</a></p>
2581 </td>
2582 <td>
2583 <p>IFFT overloads the ifft operator for Analysis objects.</p>
2584 </td>
2585 <td>
2586 <p>ao</p>
2587 </td>
2588 </tr>
2589 <!-- ao/integrate -->
2590 <tr valign="top">
2591 <td bgcolor="#f3f4f5">
2592 <p><a href="matlab:doc('ao/integrate')">integrate</a></p>
2593 </td>
2594 <td bgcolor="#f3f4f5">
2595 <p>INTEGRATE integrates the data in AO.</p>
2596 </td>
2597 <td bgcolor="#f3f4f5">
2598 <p>ao</p>
2599 </td>
2600 </tr>
2601 <!-- ao/interp -->
2602 <tr valign="top">
2603 <td>
2604 <p><a href="matlab:doc('ao/interp')">interp</a></p>
2605 </td>
2606 <td>
2607 <p>INTERP interpolate the values in the input AO(s) at new values.</p>
2608 </td>
2609 <td>
2610 <p>ao</p>
2611 </td>
2612 </tr>
2613 <!-- ao/interpmissing -->
2614 <tr valign="top">
2615 <td bgcolor="#f3f4f5">
2616 <p><a href="matlab:doc('ao/interpmissing')">interpmissing</a></p>
2617 </td>
2618 <td bgcolor="#f3f4f5">
2619 <p>INTERPMISSING interpolate missing samples in a time-series.</p>
2620 </td>
2621 <td bgcolor="#f3f4f5">
2622 <p>ao</p>
2623 </td>
2624 </tr>
2625 <!-- ao/lcohere -->
2626 <tr valign="top">
2627 <td>
2628 <p><a href="matlab:doc('ao/lcohere')">lcohere</a></p>
2629 </td>
2630 <td>
2631 <p>LCOHERE implement magnitude-squadred coherence estimation on a log frequency axis.</p>
2632 </td>
2633 <td>
2634 <p>ao</p>
2635 </td>
2636 </tr>
2637 <!-- ao/lcpsd -->
2638 <tr valign="top">
2639 <td bgcolor="#f3f4f5">
2640 <p><a href="matlab:doc('ao/lcpsd')">lcpsd</a></p>
2641 </td>
2642 <td bgcolor="#f3f4f5">
2643 <p>LCPSD implement cross-power-spectral density estimation on a log frequency axis.</p>
2644 </td>
2645 <td bgcolor="#f3f4f5">
2646 <p>ao</p>
2647 </td>
2648 </tr>
2649 <!-- ao/linSubtract -->
2650 <tr valign="top">
2651 <td>
2652 <p><a href="matlab:doc('ao/linSubtract')">linSubtract</a></p>
2653 </td>
2654 <td>
2655 <p>LINSUBTRACT subtracts a linear contribution from an input ao.</p>
2656 </td>
2657 <td>
2658 <p>ao</p>
2659 </td>
2660 </tr>
2661 <!-- ao/lincom -->
2662 <tr valign="top">
2663 <td bgcolor="#f3f4f5">
2664 <p><a href="matlab:doc('ao/lincom')">lincom</a></p>
2665 </td>
2666 <td bgcolor="#f3f4f5">
2667 <p>LINCOM make a linear combination of analysis objects</p>
2668 </td>
2669 <td bgcolor="#f3f4f5">
2670 <p>ao</p>
2671 </td>
2672 </tr>
2673 <!-- ao/linedetect -->
2674 <tr valign="top">
2675 <td>
2676 <p><a href="matlab:doc('ao/linedetect')">linedetect</a></p>
2677 </td>
2678 <td>
2679 <p>LINEDETECT find spectral lines in the ao/fsdata objects.</p>
2680 </td>
2681 <td>
2682 <p>ao</p>
2683 </td>
2684 </tr>
2685 <!-- ao/linlsqsvd -->
2686 <tr valign="top">
2687 <td bgcolor="#f3f4f5">
2688 <p><a href="matlab:doc('ao/linlsqsvd')">linlsqsvd</a></p>
2689 </td>
2690 <td bgcolor="#f3f4f5">
2691 <p>LINLSQSVD Linear least squares with singular value decomposition</p>
2692 </td>
2693 <td bgcolor="#f3f4f5">
2694 <p>ao</p>
2695 </td>
2696 </tr>
2697 <!-- ao/lisovfit -->
2698 <tr valign="top">
2699 <td>
2700 <p><a href="matlab:doc('ao/lisovfit')">lisovfit</a></p>
2701 </td>
2702 <td>
2703 <p>LISOVFIT uses LISO to fit a pole/zero model to the input frequency-series.</p>
2704 </td>
2705 <td>
2706 <p>ao</p>
2707 </td>
2708 </tr>
2709 <!-- ao/lpsd -->
2710 <tr valign="top">
2711 <td bgcolor="#f3f4f5">
2712 <p><a href="matlab:doc('ao/lpsd')">lpsd</a></p>
2713 </td>
2714 <td bgcolor="#f3f4f5">
2715 <p>LPSD implements the LPSD algorithm for analysis objects.</p>
2716 </td>
2717 <td bgcolor="#f3f4f5">
2718 <p>ao</p>
2719 </td>
2720 </tr>
2721 <!-- ao/ltfe -->
2722 <tr valign="top">
2723 <td>
2724 <p><a href="matlab:doc('ao/ltfe')">ltfe</a></p>
2725 </td>
2726 <td>
2727 <p>LTFE implements transfer function estimation computed on a log frequency axis.</p>
2728 </td>
2729 <td>
2730 <p>ao</p>
2731 </td>
2732 </tr>
2733 <!-- ao/mcmc -->
2734 <tr valign="top">
2735 <td bgcolor="#f3f4f5">
2736 <p><a href="matlab:doc('ao/mcmc')">mcmc</a></p>
2737 </td>
2738 <td bgcolor="#f3f4f5">
2739 <p>MCMC estimates paramters using a Monte Carlo Markov Chain.</p>
2740 </td>
2741 <td bgcolor="#f3f4f5">
2742 <p>ao</p>
2743 </td>
2744 </tr>
2745 <!-- ao/mcmc_td -->
2746 <tr valign="top">
2747 <td>
2748 <p><a href="matlab:doc('ao/mcmc_td')">mcmc_td</a></p>
2749 </td>
2750 <td>
2751 <p>MCMC_TD estimates paramters using a Monte Carlo Markov Chain.</p>
2752 </td>
2753 <td>
2754 <p>ao</p>
2755 </td>
2756 </tr>
2757 <!-- ao/noisegen1D -->
2758 <tr valign="top">
2759 <td bgcolor="#f3f4f5">
2760 <p><a href="matlab:doc('ao/noisegen1D')">noisegen1D</a></p>
2761 </td>
2762 <td bgcolor="#f3f4f5">
2763 <p>NOISEGEN1D generates colored noise from white noise.</p>
2764 </td>
2765 <td bgcolor="#f3f4f5">
2766 <p>ao</p>
2767 </td>
2768 </tr>
2769 <!-- ao/noisegen2D -->
2770 <tr valign="top">
2771 <td>
2772 <p><a href="matlab:doc('ao/noisegen2D')">noisegen2D</a></p>
2773 </td>
2774 <td>
2775 <p>NOISEGEN2D generates cross correleted colored noise from white noise.</p>
2776 </td>
2777 <td>
2778 <p>ao</p>
2779 </td>
2780 </tr>
2781 <!-- ao/normdist -->
2782 <tr valign="top">
2783 <td bgcolor="#f3f4f5">
2784 <p><a href="matlab:doc('ao/normdist')">normdist</a></p>
2785 </td>
2786 <td bgcolor="#f3f4f5">
2787 <p>NORMDIST computes the equivalent normal distribution for the data.</p>
2788 </td>
2789 <td bgcolor="#f3f4f5">
2790 <p>ao</p>
2791 </td>
2792 </tr>
2793 <!-- ao/polyfit -->
2794 <tr valign="top">
2795 <td>
2796 <p><a href="matlab:doc('ao/polyfit')">polyfit</a></p>
2797 </td>
2798 <td>
2799 <p>POLYFIT overloads polyfit() function of MATLAB for Analysis Objects.</p>
2800 </td>
2801 <td>
2802 <p>ao</p>
2803 </td>
2804 </tr>
2805 <!-- ao/psd -->
2806 <tr valign="top">
2807 <td bgcolor="#f3f4f5">
2808 <p><a href="matlab:doc('ao/psd')">psd</a></p>
2809 </td>
2810 <td bgcolor="#f3f4f5">
2811 <p>PSD makes power spectral density estimates of the time-series objects</p>
2812 </td>
2813 <td bgcolor="#f3f4f5">
2814 <p>ao</p>
2815 </td>
2816 </tr>
2817 <!-- ao/psdconf -->
2818 <tr valign="top">
2819 <td>
2820 <p><a href="matlab:doc('ao/psdconf')">psdconf</a></p>
2821 </td>
2822 <td>
2823 <p>PSDCONF Calculates confidence levels and variance for psd</p>
2824 </td>
2825 <td>
2826 <p>ao</p>
2827 </td>
2828 </tr>
2829 <!-- ao/removeVal -->
2830 <tr valign="top">
2831 <td bgcolor="#f3f4f5">
2832 <p><a href="matlab:doc('ao/removeVal')">removeVal</a></p>
2833 </td>
2834 <td bgcolor="#f3f4f5">
2835 <p>REMOVEVAL removes values from the input AO(s).</p>
2836 </td>
2837 <td bgcolor="#f3f4f5">
2838 <p>ao</p>
2839 </td>
2840 </tr>
2841 <!-- ao/resample -->
2842 <tr valign="top">
2843 <td>
2844 <p><a href="matlab:doc('ao/resample')">resample</a></p>
2845 </td>
2846 <td>
2847 <p>RESAMPLE overloads resample function for AOs.</p>
2848 </td>
2849 <td>
2850 <p>ao</p>
2851 </td>
2852 </tr>
2853 <!-- ao/rms -->
2854 <tr valign="top">
2855 <td bgcolor="#f3f4f5">
2856 <p><a href="matlab:doc('ao/rms')">rms</a></p>
2857 </td>
2858 <td bgcolor="#f3f4f5">
2859 <p>RMS Calculate RMS deviation from spectrum</p>
2860 </td>
2861 <td bgcolor="#f3f4f5">
2862 <p>ao</p>
2863 </td>
2864 </tr>
2865 <!-- ao/sDomainFit -->
2866 <tr valign="top">
2867 <td>
2868 <p><a href="matlab:doc('ao/sDomainFit')">sDomainFit</a></p>
2869 </td>
2870 <td>
2871 <p>sDomainFit performs a fitting loop to identify model order and</p>
2872 </td>
2873 <td>
2874 <p>ao</p>
2875 </td>
2876 </tr>
2877 <!-- ao/select -->
2878 <tr valign="top">
2879 <td bgcolor="#f3f4f5">
2880 <p><a href="matlab:doc('ao/select')">select</a></p>
2881 </td>
2882 <td bgcolor="#f3f4f5">
2883 <p>SELECT select particular samples from the input AOs and return new AOs with only those samples.</p>
2884 </td>
2885 <td bgcolor="#f3f4f5">
2886 <p>ao</p>
2887 </td>
2888 </tr>
2889 <!-- ao/sineParams -->
2890 <tr valign="top">
2891 <td>
2892 <p><a href="matlab:doc('ao/sineParams')">sineParams</a></p>
2893 </td>
2894 <td>
2895 <p>SINEPARAMS estimates parameters of sinusoids</p>
2896 </td>
2897 <td>
2898 <p>ao</p>
2899 </td>
2900 </tr>
2901 <!-- ao/smoother -->
2902 <tr valign="top">
2903 <td bgcolor="#f3f4f5">
2904 <p><a href="matlab:doc('ao/smoother')">smoother</a></p>
2905 </td>
2906 <td bgcolor="#f3f4f5">
2907 <p>SMOOTHER smooths a given series of data points using the specified method.</p>
2908 </td>
2909 <td bgcolor="#f3f4f5">
2910 <p>ao</p>
2911 </td>
2912 </tr>
2913 <!-- ao/spectrogram -->
2914 <tr valign="top">
2915 <td>
2916 <p><a href="matlab:doc('ao/spectrogram')">spectrogram</a></p>
2917 </td>
2918 <td>
2919 <p>SPECTROGRAM computes a spectrogram of the given ao/tsdata.</p>
2920 </td>
2921 <td>
2922 <p>ao</p>
2923 </td>
2924 </tr>
2925 <!-- ao/spikecleaning -->
2926 <tr valign="top">
2927 <td bgcolor="#f3f4f5">
2928 <p><a href="matlab:doc('ao/spikecleaning')">spikecleaning</a></p>
2929 </td>
2930 <td bgcolor="#f3f4f5">
2931 <p>spikecleaning detects and corrects possible spikes in analysis objects</p>
2932 </td>
2933 <td bgcolor="#f3f4f5">
2934 <p>ao</p>
2935 </td>
2936 </tr>
2937 <!-- ao/split -->
2938 <tr valign="top">
2939 <td>
2940 <p><a href="matlab:doc('ao/split')">split</a></p>
2941 </td>
2942 <td>
2943 <p>SPLIT split an analysis object into the specified segments.</p>
2944 </td>
2945 <td>
2946 <p>ao</p>
2947 </td>
2948 </tr>
2949 <!-- ao/spsd -->
2950 <tr valign="top">
2951 <td bgcolor="#f3f4f5">
2952 <p><a href="matlab:doc('ao/spsd')">spsd</a></p>
2953 </td>
2954 <td bgcolor="#f3f4f5">
2955 <p>SPSD implements the smoothed (binned) PSD algorithm for analysis objects.</p>
2956 </td>
2957 <td bgcolor="#f3f4f5">
2958 <p>ao</p>
2959 </td>
2960 </tr>
2961 <!-- ao/tdfit -->
2962 <tr valign="top">
2963 <td>
2964 <p><a href="matlab:doc('ao/tdfit')">tdfit</a></p>
2965 </td>
2966 <td>
2967 <p>TDFIT fit a set of smodels to a set of input and output signals..</p>
2968 </td>
2969 <td>
2970 <p>ao</p>
2971 </td>
2972 </tr>
2973 <!-- ao/tfe -->
2974 <tr valign="top">
2975 <td bgcolor="#f3f4f5">
2976 <p><a href="matlab:doc('ao/tfe')">tfe</a></p>
2977 </td>
2978 <td bgcolor="#f3f4f5">
2979 <p>TFE estimates transfer function between time-series objects.</p>
2980 </td>
2981 <td bgcolor="#f3f4f5">
2982 <p>ao</p>
2983 </td>
2984 </tr>
2985 <!-- ao/timeaverage -->
2986 <tr valign="top">
2987 <td>
2988 <p><a href="matlab:doc('ao/timeaverage')">timeaverage</a></p>
2989 </td>
2990 <td>
2991 <p>TIMEAVERAGE Averages time series intervals</p>
2992 </td>
2993 <td>
2994 <p>ao</p>
2995 </td>
2996 </tr>
2997 <!-- ao/upsample -->
2998 <tr valign="top">
2999 <td bgcolor="#f3f4f5">
3000 <p><a href="matlab:doc('ao/upsample')">upsample</a></p>
3001 </td>
3002 <td bgcolor="#f3f4f5">
3003 <p>UPSAMPLE overloads upsample function for AOs.</p>
3004 </td>
3005 <td bgcolor="#f3f4f5">
3006 <p>ao</p>
3007 </td>
3008 </tr>
3009 <!-- ao/whiten1D -->
3010 <tr valign="top">
3011 <td>
3012 <p><a href="matlab:doc('ao/whiten1D')">whiten1D</a></p>
3013 </td>
3014 <td>
3015 <p>WHITEN1D whitens the input time-series.</p>
3016 </td>
3017 <td>
3018 <p>ao</p>
3019 </td>
3020 </tr>
3021 <!-- ao/whiten2D -->
3022 <tr valign="top">
3023 <td bgcolor="#f3f4f5">
3024 <p><a href="matlab:doc('ao/whiten2D')">whiten2D</a></p>
3025 </td>
3026 <td bgcolor="#f3f4f5">
3027 <p>WHITEN2D whiten the noise for two cross correlated time series.</p>
3028 </td>
3029 <td bgcolor="#f3f4f5">
3030 <p>ao</p>
3031 </td>
3032 </tr>
3033 <!-- ao/xcorr -->
3034 <tr valign="top">
3035 <td>
3036 <p><a href="matlab:doc('ao/xcorr')">xcorr</a></p>
3037 </td>
3038 <td>
3039 <p>XCORR makes cross-correlation estimates of the time-series</p>
3040 </td>
3041 <td>
3042 <p>ao</p>
3043 </td>
3044 </tr>
3045 <!-- ao/xfit -->
3046 <tr valign="top">
3047 <td bgcolor="#f3f4f5">
3048 <p><a href="matlab:doc('ao/xfit')">xfit</a></p>
3049 </td>
3050 <td bgcolor="#f3f4f5">
3051 <p>XFIT fit a function of x to data.</p>
3052 </td>
3053 <td bgcolor="#f3f4f5">
3054 <p>ao</p>
3055 </td>
3056 </tr>
3057 <!-- ao/zDomainFit -->
3058 <tr valign="top">
3059 <td>
3060 <p><a href="matlab:doc('ao/zDomainFit')">zDomainFit</a></p>
3061 </td>
3062 <td>
3063 <p>zDomainFit performs a fitting loop to identify model order and</p>
3064 </td>
3065 <td>
3066 <p>ao</p>
3067 </td>
3068 </tr>
3069 <!-- ao/zeropad -->
3070 <tr valign="top">
3071 <td bgcolor="#f3f4f5">
3072 <p><a href="matlab:doc('ao/zeropad')">zeropad</a></p>
3073 </td>
3074 <td bgcolor="#f3f4f5">
3075 <p>ZEROPAD zero pads the input data series.</p>
3076 </td>
3077 <td bgcolor="#f3f4f5">
3078 <p>ao</p>
3079 </td>
3080 </tr>
3081 </tbody>
3082 </table>
3083 <!-- ===== Back to Top of Methods ===== -->
3084 <a href="#top_methods">
3085 <img src="doc_to_top_up.gif" border="0" align="bottom" alt="Back to Top of Section"/>
3086 Back to Top of Section
3087 </a>
3088
3089 </p>
3090
3091 <!-- ===== Methods Category: Trigonometry ===== -->
3092 <h3 class="title"><a name="trigonometry"/>Trigonometry</h3>
3093 <p>
3094 <table cellspacing="0" class="body" cellpadding="2" border="0" width="80%">
3095 <colgroup>
3096 <col width="15%"/>
3097 <col width="73%"/>
3098 <col width="12%"/>
3099 </colgroup>
3100 <thead>
3101 <tr valign="top">
3102 <th class="categorylist">Methods</th>
3103 <th class="categorylist">Description</th>
3104 <th class="categorylist">Defined in class</th>
3105 </tr>
3106 </thead>
3107 <tbody>
3108 <!-- ao/atan2 -->
3109 <tr valign="top">
3110 <td bgcolor="#f3f4f5">
3111 <p><a href="matlab:doc('ao/atan2')">atan2</a></p>
3112 </td>
3113 <td bgcolor="#f3f4f5">
3114 <p>ATAN2 overloads the atan2 operator for analysis objects. Four quadrant inverse tangent.</p>
3115 </td>
3116 <td bgcolor="#f3f4f5">
3117 <p>ao</p>
3118 </td>
3119 </tr>
3120 <!-- ao/intersect -->
3121 <tr valign="top">
3122 <td>
3123 <p><a href="matlab:doc('ao/intersect')">intersect</a></p>
3124 </td>
3125 <td>
3126 <p>INTERSECT overloads the intersect operator for Analysis objects.</p>
3127 </td>
3128 <td>
3129 <p>ao</p>
3130 </td>
3131 </tr>
3132 </tbody>
3133 </table>
3134 <!-- ===== Back to Top of Methods ===== -->
3135 <a href="#top_methods">
3136 <img src="doc_to_top_up.gif" border="0" align="bottom" alt="Back to Top of Section"/>
3137 Back to Top of Section
3138 </a>
3139
3140 </p>
3141
3142 <!-- ================================================== -->
3143 <!-- END CONTENT FILE -->
3144 <!-- ================================================== -->