Simulink Simulation of noncoherent BFSK passband signaling to measure the SER

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Charley Yang

Charley Yang

Күн бұрын

This shows how to simulate noncoherent BFSK passband signaling and measure the SER (Symbol Error Rate) with Simulink where several parameter values are set in terms of the MATLAB variables so that they can be changed through the MATLAB workspace.
Refer to Section 7.2 of "MATLAB/Simulink for Digital Communication" by Won Y. Yang et al. (books.google.com)

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@WonYYang
@WonYYang 4 ай бұрын
Watch kzbin.info/www/bejne/hXiqo4FnitqXhMU for Simulink Simulation of OFDM communication system to get its BER Watch kzbin.info/www/bejne/Z4vEXphpd8qhn9U for Simulink Simulation of coherent 4-FSK passband signaling to measure the SER Watch kzbin.info/www/bejne/a568gKakaMx9i9k for MATLAB Simulation of DPSK (Differential PSK) passband signaling to measure the BER Watch kzbin.info/www/bejne/eIeseZyhataioa8 for Simulink Simulation of DPSK (Differential PSK) passband signaling to measure the SER Watch kzbin.info/www/bejne/aoW3eoufjbiIb8U for Simulink Simulation of noncoherent FSK passband signaling to measure the SER Watch kzbin.info/www/bejne/h3a9nHqwg9yWfMk for MATLAB Simulation of noncoherent FSK passband signaling to measure the SER Watch kzbin.info/www/bejne/bXXbfGlpZrCqq80 for MATLAB Simulation of coherent FSK passband signaling to measure the SER Watch kzbin.info/www/bejne/apS0dJufadNki7s for MATLAB Simulation of QAM passband signaling to measure the BER Watch kzbin.info/www/bejne/gZWvoICfYst8i5Y for Simulink Simulation of QAM passband signaling to measure the SER Watch kzbin.info/www/bejne/nJu3nJWEnd51nZo for MATLAB Simulation of PSK passband signaling to measure the BER Watch kzbin.info/www/bejne/h5u0hZJmqtFqb80 for Simulink Simulation of PSK passband signaling to measure the BER The following statements should be run before running the Simulink model where the Simulink model file can be downloaded at kr.mathworks.com/matlabcentral/fileexchange/173715-simulink-simulation-of-noncoherent-bfsk-passband-signaling: %run_before_running_BFSK_passband_noncoherent.m b=1; M=2^b; % Number of bits per symbol and Modulation order Ns=80; % Number of samples per symbol % This value of Ns=80 is crucial for the output signal powers of AWGN blocks, % one with a given value of SNRdB and one with the corresponding value of EbN0dB. % I don't know why. Ts=1e-5; T=Ts/Ns; % Symbol duration and Sampling interval A=sqrt(2/Ts); % Amplitude of sine/cosine wave for modulation df=1/Ts; fc=10*df; % Frequency separation and Carrier frequency dw=2*pi*df; wc=2*pi*fc; wc*T
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