Use Simulink, you can set the symbol rate as 1 kHz. a) Plot the spectrums of the BFSK, 4FSK, 8FSK, 16FSK system at E_b/N_0=12 dB. Compare the theoretical bandwidth with the observed MFSK spectrums. Note: Simulink has MFSK/MQAM/MPSK baseband equivalent Modulator/Demodulator rather than bandpass. Hence, you can treat the center frequency 0 Hz as the carrier frequency. b) For BFSK, 4FSK, 8FSK and 16FSK, vary E_b/N_0 and obtain the P_b vs E_b/N_0 (in dB) curves. (For P_b you need to show both simulated BER and theoretical BER on top of each other). Create a transmission bandwidth, data rate, and BER table for the considered modulations, and comment on your results.

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H5.
Use Simulink, you can set the symbol rate as 1 kHz.
a) Plot the spectrums of the BFSK, 4FSK, 8FSK, 16FSK system at E_b/N_0=12 dB. Compare the theoretical bandwidth with the observed
MFSK spectrums. Note: Simulink has MFSK/MQAM/MPSK baseband equivalent Modulator/Demodulator rather than bandpass.
Hence, you can treat the center frequency 0 Hz as the carrier frequency.
b) For BFSK, 4FSK, 8FSK and 16FSK, vary E_b/N_0 and obtain the P_b vs E_b/N_0 (in dB) curves. (For P_b you need to show both
simulated BER and theoretical BER on top of each other). Create a transmission bandwidth, data rate, and BER table for the
considered modulations, and comment on your results.
Transcribed Image Text:Use Simulink, you can set the symbol rate as 1 kHz. a) Plot the spectrums of the BFSK, 4FSK, 8FSK, 16FSK system at E_b/N_0=12 dB. Compare the theoretical bandwidth with the observed MFSK spectrums. Note: Simulink has MFSK/MQAM/MPSK baseband equivalent Modulator/Demodulator rather than bandpass. Hence, you can treat the center frequency 0 Hz as the carrier frequency. b) For BFSK, 4FSK, 8FSK and 16FSK, vary E_b/N_0 and obtain the P_b vs E_b/N_0 (in dB) curves. (For P_b you need to show both simulated BER and theoretical BER on top of each other). Create a transmission bandwidth, data rate, and BER table for the considered modulations, and comment on your results.
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