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author | wolffd |
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date | Tue, 10 Feb 2015 15:05:51 +0000 |
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wolffd@0 | 1 <html> |
wolffd@0 | 2 <head> |
wolffd@0 | 3 <title> |
wolffd@0 | 4 Netlab Reference Manual gpgrad |
wolffd@0 | 5 </title> |
wolffd@0 | 6 </head> |
wolffd@0 | 7 <body> |
wolffd@0 | 8 <H1> gpgrad |
wolffd@0 | 9 </H1> |
wolffd@0 | 10 <h2> |
wolffd@0 | 11 Purpose |
wolffd@0 | 12 </h2> |
wolffd@0 | 13 Evaluate error gradient for Gaussian Process. |
wolffd@0 | 14 |
wolffd@0 | 15 <p><h2> |
wolffd@0 | 16 Synopsis |
wolffd@0 | 17 </h2> |
wolffd@0 | 18 <PRE> |
wolffd@0 | 19 g = gpgrad(net, x, t) |
wolffd@0 | 20 </PRE> |
wolffd@0 | 21 |
wolffd@0 | 22 |
wolffd@0 | 23 <p><h2> |
wolffd@0 | 24 Description |
wolffd@0 | 25 </h2> |
wolffd@0 | 26 <CODE>g = gpgrad(net, x, t)</CODE> takes a Gaussian Process data structure <CODE>net</CODE> together |
wolffd@0 | 27 with a matrix <CODE>x</CODE> of input vectors and a matrix <CODE>t</CODE> of target |
wolffd@0 | 28 vectors, and evaluates the error gradient <CODE>g</CODE>. Each row |
wolffd@0 | 29 of <CODE>x</CODE> corresponds to one input vector and each row of <CODE>t</CODE> |
wolffd@0 | 30 corresponds to one target vector. |
wolffd@0 | 31 |
wolffd@0 | 32 <p><h2> |
wolffd@0 | 33 See Also |
wolffd@0 | 34 </h2> |
wolffd@0 | 35 <CODE><a href="gp.htm">gp</a></CODE>, <CODE><a href="gpcovar.htm">gpcovar</a></CODE>, <CODE><a href="gpfwd.htm">gpfwd</a></CODE>, <CODE><a href="gperr.htm">gperr</a></CODE><hr> |
wolffd@0 | 36 <b>Pages:</b> |
wolffd@0 | 37 <a href="index.htm">Index</a> |
wolffd@0 | 38 <hr> |
wolffd@0 | 39 <p>Copyright (c) Ian T Nabney (1996-9) |
wolffd@0 | 40 |
wolffd@0 | 41 |
wolffd@0 | 42 </body> |
wolffd@0 | 43 </html> |