b) Given a binary Phase Shift Keying (PSK) system in which the allocated bandwidth is 25×C kHz. Assume the transmitted signals s(t) has a sinusoidal carrier of amplitude a = 5 mV. The signal, through transmission, is subjected to an Additive White Gaussian Noise (AWGN) channel of power spectral density No/2 10-! W/Hz. For such a system, it is required to calculate the attainable bit error rate, Pe, to have a reliable system. C=5

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b) Given a binary Phase Shift Keying (PSK) system in which the allocated bandwidth
is 25×C kHz. Assume the transmitted signals s(t) has a sinusoidal carrier of
amplitude a = 5 mV. The signal, through transmission, is subjected to an Additive
White Gaussian Noise (AWGN) channel of power spectral density No/2 = 10-!
W/Hz. For such a system, it is required to calculate the attainable bit error rate, Pe,
to have a reliable system.
c=5
Transcribed Image Text:b) Given a binary Phase Shift Keying (PSK) system in which the allocated bandwidth is 25×C kHz. Assume the transmitted signals s(t) has a sinusoidal carrier of amplitude a = 5 mV. The signal, through transmission, is subjected to an Additive White Gaussian Noise (AWGN) channel of power spectral density No/2 = 10-! W/Hz. For such a system, it is required to calculate the attainable bit error rate, Pe, to have a reliable system. c=5
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