5. (15 points) Now the sampled impulse response of a data-transmission system (encompassing the transmit filter and the
Posted: Mon May 02, 2022 12:57 pm
Please read the question first. Dont just copy the answer from
previous questions. Probably gonna need MATLAB kinda long
5. (15 points) Now the sampled impulse response of a data-transmission system (encompassing the transmit filter and the channel) is defined by: p(0) = 1, p(T) = -0.1, PC-T) = 0.6, p(2T) = -0.2, p(-21) = 0.17. (a) Calculate the coefficients for five-tap ZF equalizer of this system using MATLAB. (b) Using the equalizer determined in part (a), calculate the MSE of the residual ISI at the equalizer output. (c) Design a five-tap MMSE equalizer, assuming the window size of nine, and determine the resulting MSE of the equalizer using MATLAB. (d) Compare the MSE of the MMSE equalizer to that of the ZF equalizer.
previous questions. Probably gonna need MATLAB kinda long
5. (15 points) Now the sampled impulse response of a data-transmission system (encompassing the transmit filter and the channel) is defined by: p(0) = 1, p(T) = -0.1, PC-T) = 0.6, p(2T) = -0.2, p(-21) = 0.17. (a) Calculate the coefficients for five-tap ZF equalizer of this system using MATLAB. (b) Using the equalizer determined in part (a), calculate the MSE of the residual ISI at the equalizer output. (c) Design a five-tap MMSE equalizer, assuming the window size of nine, and determine the resulting MSE of the equalizer using MATLAB. (d) Compare the MSE of the MMSE equalizer to that of the ZF equalizer.