Difference between revisions of "Transfermat.m"
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{{DISPLAYTITLE:transfermat.m}} __NOTOC__ | {{DISPLAYTITLE:transfermat.m}} __NOTOC__ | ||
| − | Transfer matrix calculation for linear | + | Transfer matrix calculation for linear filters. |
==Syntax== | ==Syntax== | ||
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T=transfermat(amp_inps,amp_outs) | T=transfermat(amp_inps,amp_outs) | ||
| − | == | + | ==Parameters== |
amp_inps - a matrix with amplifier input vectors as columns | amp_inps - a matrix with amplifier input vectors as columns | ||
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==See also== | ==See also== | ||
| − | [[ | + | [[amp_root.m]], [[amp_tanh.m]], [[firf.m]], [[kernelest.m]], [[no_dist.m]], [[penalty.m]], [[restrans.m]], [[spf.m]], [[szf.m]], [[Optimal control module]] |
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''Version 2.1, authors: [[Ilya Kuprov]]'' | ''Version 2.1, authors: [[Ilya Kuprov]]'' | ||
Latest revision as of 19:42, 6 June 2026
Transfer matrix calculation for linear filters.
Syntax
T=transfermat(amp_inps,amp_outs)
Parameters
amp_inps - a matrix with amplifier input vectors as columns amp_outs - a matrix with amplifier output vectors as columns
Outputs
T - the transfer matrix, such that amp_outs=T*amp_inps
in the least squares sense
Notes
The number of input-output vector pairs should be bigger than the number of elements in those vectors.
See also
amp_root.m, amp_tanh.m, firf.m, kernelest.m, no_dist.m, penalty.m, restrans.m, spf.m, szf.m, Optimal control module
Version 2.1, authors: Ilya Kuprov