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1 <html> | |
2 <head> | |
3 <title> | |
4 Netlab Reference Manual mdn2gmm | |
5 </title> | |
6 </head> | |
7 <body> | |
8 <H1> mdn2gmm | |
9 </H1> | |
10 <h2> | |
11 Purpose | |
12 </h2> | |
13 Converts an MDN mixture data structure to array of GMMs. | |
14 | |
15 <p><h2> | |
16 Synopsis | |
17 </h2> | |
18 <PRE> | |
19 gmmmixes = mdn2gmm(mdnmixes) | |
20 </PRE> | |
21 | |
22 | |
23 <p><h2> | |
24 Description | |
25 </h2> | |
26 <CODE>gmmmixes = mdn2gmm(mdnmixes)</CODE> takes an MDN mixture data structure | |
27 <CODE>mdnmixes</CODE> | |
28 containing three matrices (for priors, centres and variances) where each | |
29 row represents the corresponding parameter values for a different mixture model | |
30 and creates an array of GMMs. These can then be used with the standard | |
31 Netlab Gaussian mixture model functions. | |
32 | |
33 <p><h2> | |
34 Example | |
35 </h2> | |
36 <PRE> | |
37 | |
38 mdnmixes = mdnfwd(net, x); | |
39 mixes = mdn2gmm(mdnmixes); | |
40 p = gmmprob(mixes(1), y); | |
41 </PRE> | |
42 | |
43 This creates an array GMM mixture models (one for each data point in | |
44 <CODE>x</CODE>). The vector <CODE>p</CODE> is then filled with the conditional | |
45 probabilities of the values <CODE>y</CODE> given <CODE>x(1,:)</CODE>. | |
46 | |
47 <p><h2> | |
48 See Also | |
49 </h2> | |
50 <CODE><a href="gmm.htm">gmm</a></CODE>, <CODE><a href="mdn.htm">mdn</a></CODE>, <CODE><a href="mdnfwd.htm">mdnfwd</a></CODE><hr> | |
51 <b>Pages:</b> | |
52 <a href="index.htm">Index</a> | |
53 <hr> | |
54 <p>Copyright (c) Ian T Nabney (1996-9) | |
55 <p>David J Evans (1998) | |
56 | |
57 </body> | |
58 </html> |