finished organization of init funcions and parameters
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@@ -1,5 +1,4 @@
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%% Derived from preload
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fs_eff = fs_RF/IntDecFactor; % Effective fs before interpolation / after decimation
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Ts_eff = 1/fs_eff;
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@@ -53,27 +52,27 @@ stoptime = 10*TsSW;
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%% Channelizer parameters
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% Number of channels, maximally decimated channelizer M/D=1
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%nChan = 512;
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%Number of channels, maximally decimated channelizer M/D=1
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nChan = 512;
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% Taps per band
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%nTapsPerBand = 16;
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%Taps per band
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nTapsPerBand = 16;
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% Create channelizer object
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%channelizer = dsp.Channelizer('NumFrequencyBands',nChan,...
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% 'DecimationFactor',nChan,...
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% 'NumTapsPerBand',nTapsPerBand);
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% Channelizer coefficients
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%channelizerCoeffs = channelizer.coeffs.Numerator;
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%Create channelizer object
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channelizer = dsp.Channelizer('NumFrequencyBands',nChan,...
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'DecimationFactor',nChan,...
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'NumTapsPerBand',nTapsPerBand);
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%Channelizer coefficients
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channelizerCoeffs = channelizer.coeffs.Numerator;
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% Channel bandwidth
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%Channel bandwidth
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%chanBW = fs/nChan;
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% Starting frequency for each channel
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%Starting frequency for each channel
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%chanFStart = chanBW/2:chanBW:(fs/2-chanBW/2);
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% Number of frames out of channelzier
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%nFrames = nChan/SamplesPerCycle;
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%Number of frames out of channelzier
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nFrames = nChan/SamplesPerCycle;
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% Frame size after serializing x2
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%frameSize = SamplesPerCycle/2;
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5
utilities/soc_rfsoc_postload.m
Normal file
5
utilities/soc_rfsoc_postload.m
Normal file
@@ -0,0 +1,5 @@
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%% Get parameters configured on the block
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IntDecFactor = str2double(get_param([bdroot '/RF Data Converter'], ...
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'interpolationMode')); % Interpolation and decimation factor
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SamplesPerCycle = str2double(get_param([bdroot '/RF Data Converter'], ...
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'dacSamplesPerCycle')); % samples per FPGA cycle
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@@ -1,8 +1,6 @@
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%% DMA and SW parameters
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FrameSize = 512;
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NumBuffers = 16;
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%downSamplingFactor = 64;
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%SrcSel = 0;
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%% Rate setup (use txspectrum and rxspectrum tools)
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