Design an AM modulation scheme that takes an input message x(t) and creates the transmitted signal y(t) = x(t) cos(wet), using only a square wave oscillator, ideal filters, and multipliers. You can assume that the bandlimit of x(t) is much smaller than wc. should have the following: • a system diagram indicating the components used and how they are connected, with x(t) as input and y(t) as output

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Design an AM modulation scheme that takes an input message x(t) and creates the
transmitted signal y(t) = x(t) cos(wet), using only a square wave oscillator, ideal filters,
and multipliers. You can assume that the bandlimit of x(t) is much smaller than we.
should have the following:
• a system diagram indicating the components used and how they are connected, with
x(t) as input and y(t) as output
indicate key properties of all components like frequency of the square wave, cut
off frequencies and gains of all filters
● and a detailed justification that shows that the desired transmitted y(t) = x(t) cos(wet)
is indeed obtained as the system output.
Transcribed Image Text:Design an AM modulation scheme that takes an input message x(t) and creates the transmitted signal y(t) = x(t) cos(wet), using only a square wave oscillator, ideal filters, and multipliers. You can assume that the bandlimit of x(t) is much smaller than we. should have the following: • a system diagram indicating the components used and how they are connected, with x(t) as input and y(t) as output indicate key properties of all components like frequency of the square wave, cut off frequencies and gains of all filters ● and a detailed justification that shows that the desired transmitted y(t) = x(t) cos(wet) is indeed obtained as the system output.
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