annotate branches/carfac_cpp/src/AGC.cpp @ 554:d18ff10b5559

Adding code to AGC_coefficients(AGC_params*, float, int) Function FIR_coeffs as private function in class AGC_coefficients. FIR_coeffs returns a FloatArray and modify a boolean variable.
author pfh1976@gmail.com
date Sun, 08 Apr 2012 14:28:55 +0000
parents e63fbe19b255
children 0fde611fcd10
rev   line source
Ulf@538 1 #include "AGC.h"
pfh1976@554 2 #include <cmath>
pfh1976@554 3 #include <stdlib.h>
pfh1976@554 4 #include <stdio.h>
Ulf@538 5
Ulf@545 6 AGC_coefficients::AGC_coefficients(AGC_parameters* AGC_params,
Ulf@545 7 float fs, int n_ch){
pfh1976@554 8 float decim = 1.0;
pfh1976@554 9 float total_DC_gain = 0.0;
pfh1976@554 10 float tau, ntimes, delay, spread_sq, u, p, dp;
pfh1976@554 11 int n_taps = 0, n_iterations = 1;
pfh1976@554 12 bool FIR_OK = false;
pfh1976@554 13
pfh1976@554 14 n_ch_ = n_ch;
pfh1976@554 15 n_agc_stages_ = AGC_params->n_stages_;
pfh1976@554 16 agc_stage_gain_ = AGC_params->agc_stage_gain_;
pfh1976@554 17
pfh1976@554 18 // FloatArray initialization using assign method - dont know if this is good enough
pfh1976@554 19 agc_epsilon_.assign(n_agc_stages_, 0.0); //the 1/(tau*fs) roughly
pfh1976@554 20 agc_polez1_ = agc_epsilon_;
pfh1976@554 21 agc_polez2_ = agc_epsilon_;
pfh1976@554 22 agc_spatial_iterations_ = agc_epsilon_;
pfh1976@554 23 agc_spatial_n_taps_ = agc_epsilon_;
pfh1976@554 24 agc_mix_coeffs_ = agc_epsilon_;
pfh1976@554 25 FloatArray agc1_scales = AGC_params->agc1_scales_;
pfh1976@554 26 FloatArray agc2_scales = AGC_params->agc2_scales_;
pfh1976@554 27 FloatArray agc_spatial_FIR;
pfh1976@554 28 decimation_ = AGC_params->decimation_;
pfh1976@554 29
pfh1976@554 30 for(int stage=0; stage < n_agc_stages_; stage++){
pfh1976@554 31 tau = AGC_params->time_constants_[stage];
pfh1976@554 32 decim *= AGC_params->decimation_[stage];
pfh1976@554 33 agc_epsilon_[stage] = 1.0 - exp(-decim/(tau*fs));
pfh1976@554 34 ntimes = tau * (fs/decim);
pfh1976@554 35 delay = (agc2_scales[stage]-agc1_scales[stage])/ntimes;
pfh1976@554 36 spread_sq = (agc1_scales[stage]*agc1_scales[stage] + agc2_scales[stage]*agc2_scales[stage])/ntimes;
pfh1976@554 37
pfh1976@554 38 u = 1.0 + 1.0/spread_sq;
pfh1976@554 39 p = u - sqrt(u*u-1);
pfh1976@554 40 dp = delay*(1 - 2*p + p*p)*0.5;
pfh1976@554 41 agc_polez1_[stage] = p - dp;
pfh1976@554 42 agc_polez2_[stage] = p + dp;
pfh1976@554 43
pfh1976@554 44 while(!FIR_OK){
pfh1976@554 45 switch(n_taps){
pfh1976@554 46 case 0:
pfh1976@554 47 n_taps = 3;
pfh1976@554 48 break;
pfh1976@554 49 case 3:
pfh1976@554 50 n_taps = 5;
pfh1976@554 51 break;
pfh1976@554 52 case 5:
pfh1976@554 53 n_iterations++;
pfh1976@554 54 if(n_iterations > 16){
pfh1976@554 55 printf("Too many n_iterations in CARFAC_DesignAGC\n");
pfh1976@554 56 exit(1);
pfh1976@554 57 }
pfh1976@554 58 break;
pfh1976@554 59 default:
pfh1976@554 60 printf("Bad n_taps in CARFAC_DesignAGC\n");
pfh1976@554 61 exit(1);
pfh1976@554 62 }
pfh1976@554 63 agc_spatial_FIR = FIR_coeffs(n_taps, spread_sq, delay, n_iterations, &FIR_OK);
pfh1976@554 64 }
pfh1976@554 65 agc_spatial_iterations_[stage] = (float) n_iterations;
pfh1976@554 66 agc_spatial_n_taps_[stage] = (float) n_taps;
pfh1976@554 67 agc_spatial_fir_.push_back(FloatArray());
pfh1976@554 68
pfh1976@554 69 for(int i =0; i < 3; i++)
pfh1976@554 70 agc_spatial_fir_[stage].push_back(agc_spatial_FIR[i]);
pfh1976@554 71
pfh1976@554 72 total_DC_gain += pow(AGC_params->agc_stage_gain_,stage);
pfh1976@554 73
pfh1976@554 74 if(stage == 0)
pfh1976@554 75 agc_mix_coeffs_[stage] = 0.0;
pfh1976@554 76 else
pfh1976@554 77 agc_mix_coeffs_[stage] = AGC_params->agc_mix_coeff_/(tau * (fs/decim));
pfh1976@554 78 }
pfh1976@554 79 agc_gain_ = total_DC_gain;
pfh1976@554 80
pfh1976@554 81 // TODO Computation of the detect_scale_ member
Ulf@538 82 }
Ulf@545 83 AGC_coefficients::~AGC_coefficients(){
Ulf@544 84 // TODO Auto-generated destructor stub
Ulf@538 85 }
pfh1976@554 86
pfh1976@554 87 FloatArray AGC_coefficients::FIR_coeffs(int n_taps, float var, float mn, int n_iter, bool* ptr_FIR_OK)
pfh1976@554 88 {
pfh1976@554 89 float a, b;
pfh1976@554 90 FloatArray FIR(3);
pfh1976@554 91 mn /= n_iter;
pfh1976@554 92 var /= n_iter;
pfh1976@554 93
pfh1976@554 94 switch(n_taps){
pfh1976@554 95 case 3:
pfh1976@554 96 a = (var + mn*mn - mn)/2;
pfh1976@554 97 b = (var + mn*mn + mn)/2;
pfh1976@554 98 FIR[0] = a;
pfh1976@554 99 FIR[1] = 1.0 - a - b;
pfh1976@554 100 FIR[2] = b;
pfh1976@554 101 if(FIR[1] >= 0.2)
pfh1976@554 102 *ptr_FIR_OK = true;
pfh1976@554 103 break;
pfh1976@554 104 case 5:
pfh1976@554 105 a = ((var + mn*mn)*2/5 - mn*2/3)/2;
pfh1976@554 106 b = ((var + mn*mn)*2/5 + mn*2/3)/2;
pfh1976@554 107 FIR[0] = a/2;
pfh1976@554 108 FIR[1] = 1.0 - a - b;
pfh1976@554 109 FIR[2] = b;
pfh1976@554 110 if(FIR[1] >= 0.1)
pfh1976@554 111 *ptr_FIR_OK = true;
pfh1976@554 112 break;
pfh1976@554 113 default:
pfh1976@554 114 printf("Bad n_taps in AGC_spatial_FIR\n");
pfh1976@554 115 exit(1);
pfh1976@554 116 }
pfh1976@554 117
pfh1976@554 118 return FIR;
pfh1976@554 119 }