annotate matlab/bmm/carfac/CARFAC_Close_AGC_Loop.m @ 469:bc0618485ad4

reparameterize stage gain g and compressed damping with theta; interpolate g
author dicklyon@google.com
date Sun, 11 Mar 2012 00:31:57 +0000
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children b4da807f4318
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dicklyon@469 1 % Copyright 2012, Google, Inc.
dicklyon@469 2 % Author Richard F. Lyon
dicklyon@469 3 %
dicklyon@469 4 % This Matlab file is part of an implementation of Lyon's cochlear model:
dicklyon@469 5 % "Cascade of Asymmetric Resonators with Fast-Acting Compression"
dicklyon@469 6 % to supplement Lyon's upcoming book "Human and Machine Hearing"
dicklyon@469 7 %
dicklyon@469 8 % Licensed under the Apache License, Version 2.0 (the "License");
dicklyon@469 9 % you may not use this file except in compliance with the License.
dicklyon@469 10 % You may obtain a copy of the License at
dicklyon@469 11 %
dicklyon@469 12 % http://www.apache.org/licenses/LICENSE-2.0
dicklyon@469 13 %
dicklyon@469 14 % Unless required by applicable law or agreed to in writing, software
dicklyon@469 15 % distributed under the License is distributed on an "AS IS" BASIS,
dicklyon@469 16 % WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
dicklyon@469 17 % See the License for the specific language governing permissions and
dicklyon@469 18 % limitations under the License.
dicklyon@469 19
dicklyon@469 20 function CF = CARFAC_Close_AGC_Loop(CF)
dicklyon@469 21 % function CF = CARFAC_Close_AGC_Loop(CF)
dicklyon@469 22
dicklyon@469 23 % fastest decimated rate determines interp needed:
dicklyon@469 24 decim1 = CF.AGC_params.decimation(1);
dicklyon@469 25
dicklyon@469 26 for mic = 1:CF.n_mics
dicklyon@469 27 extra_damping = CF.AGC_state(mic).AGC_memory(:, 1); % stage 1 result
dicklyon@469 28 % Update the target stage gain for the new damping:
dicklyon@469 29 new_g = CARFAC_Stage_g(CF.filter_coeffs(mic), extra_damping);
dicklyon@469 30 % set the deltas needed to get to the new damping:
dicklyon@469 31 CF.filter_state(mic).dzB_memory = ...
dicklyon@469 32 (extra_damping - CF.filter_state(mic).zB_memory) / decim1;
dicklyon@469 33 CF.filter_state(mic).dg_memory = ...
dicklyon@469 34 (new_g - CF.filter_state(mic).g_memory) / decim1;
dicklyon@469 35 end