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📄 decimate.dat

📁 《无线通信系统仿真——c++使用模型》这本书的源代码
💻 DAT
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$
system
Date_In_Short_Rpt_Name = true
Date_In_Full_Rpt_Name = false
Max_Pass_Number = 60000
$
sig_gen
Phase_In_Deg = 0.0
Freq_In_Hz = 0.2
$
sine_gen_1
Num_Sines = 3
Holdoff_Delay = 0.0
Phase_In_Deg = 0.0, 0.0, 0.0
Freq_In_Hz = 0.375, 0.75, 1.5
Tone_Gain = 0.25, 0.25, 0.25
$
noise_gen
Anticip_Input_Pwr = 0.125
Desired_Output_Pwr = 0.125
Dexxxxsired_Eb_No = 19.03
Desired_Eb_No = 20.0
Symb_Period = 1.0
Num_Bits_Per_Symb = 1
Time_Const_For_Pwr_Mtr = 30.0
Seed = 7885561
Sig_Pwr_Meas_Enabled = false
Outpt_Pwr_Scaling_On = false
$
power_meter_3
init_pwr_output = 0.04
integ_const = 1000.0
$
power_meter_1
init_pwr_output = 0.125
integ_const = 1000.0
$
power_meter_5
init_pwr_output = 0.125
integ_const = 1000.0
$
power_meter_6
init_pwr_output = 0.0061
integ_const = 1000.0
$
power_meter_4
init_pwr_output = 0.0061
integ_const = 1000.0
$
downsampler
Decim_Rate = 4
$
noise_downsampler
Decim_Rate = 4
$
direct_fir
Bypass_Enabled = false
Kind_Of_Filter_Resp = 3
Coeff_Fname = remez_filt_coeff_39.txt
Fixed_Gain = 1.0
$
noise_fir
Bypass_Enabled = false
Kind_Of_Filter_Resp = 3
Coeff_Fname = remez_filt_coeff_39.txt
Fixed_Gain = 1.0
$
spec_analyzer_1
Kind_Of_Spec_Estim = SPECT_CALC_BARTLETT_PDGM
Num_Segs_To_Avg = 600
Seg_Len = 4000
Fft_Len = 4096
Norm_Factor = 1.0
Hold_Off = 0
Psd_File_Name = test_sig_psd
Freq_Norm_Factor = 1.0
Output_In_Decibels = true
Plot_Two_Sided = true
Halt_When_Completed = false
$
spec_analyzer_7
Kind_Of_Spec_Estim = SPECT_CALC_BARTLETT_PDGM
Num_Segs_To_Avg = 600
Seg_Len = 4000
Fft_Len = 4096
Norm_Factor = 1.0
Hold_Off = 0
Psd_File_Name = noisy_test_sig_psd
Freq_Norm_Factor = 1.0
Output_In_Decibels = true
Plot_Two_Sided = true
Halt_When_Completed = false
$
spec_analyzer_2
Kind_Of_Spec_Estim = SPECT_CALC_BARTLETT_PDGM
Num_Segs_To_Avg = 600
Seg_Len = 1000
Fft_Len = 1024
Norm_Factor = 1.0
Hold_Off = 0
Psd_File_Name = downsamp_test_sig_psd
Freq_Norm_Factor = 1.0
Output_In_Decibels = true
Plot_Two_Sided = true
Halt_When_Completed = false
$
spec_analyzer_3
Kind_Of_Spec_Estim = SPECT_CALC_BARTLETT_PDGM
Num_Segs_To_Avg = 600
Seg_Len = 4000
Fft_Len = 4096
Norm_Factor = 1.0
Hold_Off = 0
Psd_File_Name = noisy_only_sig_psd
Freq_Norm_Factor = 1.0
Output_In_Decibels = true
Plot_Two_Sided = true
Halt_When_Completed = false
$
spec_analyzer_4
Kind_Of_Spec_Estim = SPECT_CALC_BARTLETT_PDGM
Num_Segs_To_Avg = 600
Seg_Len = 1000
Fft_Len = 1024
Norm_Factor = 1.0
Hold_Off = 0
Psd_File_Name = downsamp_noise_psd
Freq_Norm_Factor = 1.0
Output_In_Decibels = true
Plot_Two_Sided = true
Halt_When_Completed = true
$
spec_analyzer_5
Kind_Of_Spec_Estim = SPECT_CALC_BARTLETT_PDGM
Num_Segs_To_Avg = 600
Seg_Len = 4000
Fft_Len = 4096
Norm_Factor = 1.0
Hold_Off = 0
Psd_File_Name = filt_sig_psd
Freq_Norm_Factor = 1.0
Output_In_Decibels = true
Plot_Two_Sided = true
Halt_When_Completed = false
$
spec_analyzer_6
Kind_Of_Spec_Estim = SPECT_CALC_BARTLETT_PDGM
Num_Segs_To_Avg = 600
Seg_Len = 4000
Fft_Len = 4096
Norm_Factor = 1.0
Hold_Off = 0
Psd_File_Name = filt_noise_psd
Freq_Norm_Factor = 1.0
Output_In_Decibels = true
Plot_Two_Sided = true
Halt_When_Completed = false
$
freq_dom_filt
Fft_Size = 64
Dt_For_Fft = 0.03125
Overlap_Save_Mem = 0.5623
Ovvverlap_Save_Mem = 0.0
Pt_Data_Fname = filt_freq_resp.txt
$
test_delay
Delay_Mode = DELAY_MODE_FIXED
Max_Delay_In_Samps = 11
Initial_Delay_In_Samps = 11
Num_Initial_Passes = 1
$
downsamp_delay
Delay_Mode = DELAY_MODE_FIXED
Max_Delay_In_Samps = 1
Initial_Delay_In_Samps = 1
Num_Initial_Passes = 1
$
temp_anchor
samp_intvl = 0.015625
block_size = 184
$
SignalPlotter
Num_Plot_Sigs = 8
test_sig, 0.0, 200.0, 1, 0, 0
noisy_test_sig, 0.0, 200.0, 1, 0, 0
delayed_test_sig, 0.0, 200.0, 1, 0, 0
downsamp_test_sig, 0.0, 200.0, 1, 0, 0
delayed_downsamp_sig, 0.0, 200.0, 1, 0, 0
est_avg_sig_pwr_4, 2000.0, 2800.0, 2, 0, 0
est_avg_sig_pwr_5, 2000.0, 2800.0, 2, 0, 0
est_avg_sig_pwr_6, 2000.0, 2800.0, 2, 0, 0
$
$EOF
start_time
stop_time
plot_decim_rate
count_vice_time
file_header_req

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