Find ϕLSB (t) and ϕUSB (t) for the modulating signal m(t) = πBsinc2 (2πBt) with B = 2000 Hzand carrier frequency fc = 10, 000 Hz. Follow these steps:(a) Sketch spectra of m(t) and the corresponding DSB-SC signal 2m(t) cos ωct.(b) To find the LSB spectrum, suppress the USB in the DSB-SC spectrum found in part (a).(c) Find the LSB signal ϕLSB (t), which is the inverse Fourier transform of the LSB spectrumfound in part (b). Follow a similar procedure to also find ϕUSB(t)
Find ϕLSB (t) and ϕUSB (t) for the modulating signal m(t) = πBsinc2 (2πBt) with B = 2000 Hzand carrier frequency fc = 10, 000 Hz. Follow these steps:(a) Sketch spectra of m(t) and the corresponding DSB-SC signal 2m(t) cos ωct.(b) To find the LSB spectrum, suppress the USB in the DSB-SC spectrum found in part (a).(c) Find the LSB signal ϕLSB (t), which is the inverse Fourier transform of the LSB spectrumfound in part (b). Follow a similar procedure to also find ϕUSB(t)
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
Problem 1P: Visit your local library (at school or home) and describe the extent to which it provides literature...
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Question
Find ϕLSB (t) and ϕUSB (t) for the modulating signal m(t) = πBsinc2 (2πBt) with B = 2000 Hz
and carrier frequency fc = 10, 000 Hz. Follow these steps:
(a) Sketch spectra of m(t) and the corresponding DSB-SC signal 2m(t) cos ωct.
(b) To find the LSB spectrum, suppress the USB in the DSB-SC spectrum found in part (a).
(c) Find the LSB signal ϕLSB (t), which is the inverse Fourier transform of the LSB spectrum
found in part (b). Follow a similar procedure to also find ϕUSB(t)
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