Solve using MATLAB only. results should look like this for both tasks.

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answerhappygod
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Solve using MATLAB only. results should look like this for both tasks.

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Solve using MATLAB only.
Solve Using Matlab Only Results Should Look Like This For Both Tasks 1
Solve Using Matlab Only Results Should Look Like This For Both Tasks 1 (35.67 KiB) Viewed 23 times
Solve Using Matlab Only Results Should Look Like This For Both Tasks 2
Solve Using Matlab Only Results Should Look Like This For Both Tasks 2 (13.8 KiB) Viewed 23 times
results should look like this for both tasks.
Solve Using Matlab Only Results Should Look Like This For Both Tasks 3
Solve Using Matlab Only Results Should Look Like This For Both Tasks 3 (32.7 KiB) Viewed 23 times
TASK 1: Use MATLAB for: 1- Demonstration of NRZ signal. 2- Demonstration of BPSK Modulation. a. Use a simple BPSK modulation scheme in which a random binary stream is represented in NRZ format and the resulting signal is multiplied by reference carrier frequency (Fig. 6.1). 3- Generate AWGN channel noise and add it with the BPSK modulated signal. 4- Demonstration of BPSK Demodulation: a. The noise added signal can be demodulated by multiplying it with the reference frequency and integrated over one-bit period. Deliverables: 1- Plot input binary data. 2- Plot NRZ encoded data. 3- Plot BPSK Modulated data with AWGN noise. 4- BPSK Constellation
TASK: Write a MATLAB code to plot BER vs. Eb/NO for BPSK modulation over AWGN for both simulated and theoretical. Deliverable: Plot BER vs. Eb/NO for BPSK modulation over AWGN for both simulated and theoretical.
KA 19 Amplitude 1.5 1 logo 0.5 Amplitude 0 -0.5 20 0.02 0.02 Input Binary Data 40 Samples Polar NRZ encoded data 0.04 60 0.04 Time BPSK Modulated Data Time 0.06 0.06 80 0.08 0.08 100 Amplitude Quadrature Phase component 0.5 0 -0.5 -1.5 BPSK Modulated Data with AWGN noise 0.02 1 0.04 Time 0.06 0 BPSK Constellation at Transmitter 0.5 0.08 -0.5 Inphase Component 1 0.1 1.5
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