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== AM Demodulation ==
 
== AM Demodulation ==
  
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<math>r(n)= x(n)*cos^2(n \theta)= \frac{1}{2} x(n) + \frac{1}{2}x(n)*cos(2n\theta)</math><br>
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<math>x(t)*cos(\frac{\pi t}{4})</math> &rArr; <math>\frac{1}{2}[X(e^{j(\theta - \pi/4)})
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+ X(e^{j(\theta + \pi/4)}) ]</math>.<br>
  
 
[[Image:Hw9_ECE301Fall2008mboutin.JPG]]
 
[[Image:Hw9_ECE301Fall2008mboutin.JPG]]

Revision as of 12:21, 17 November 2008

AM Demodulation

$ r(n)= x(n)*cos^2(n \theta)= \frac{1}{2} x(n) + \frac{1}{2}x(n)*cos(2n\theta) $

$ x(t)*cos(\frac{\pi t}{4}) $$ \frac{1}{2}[X(e^{j(\theta - \pi/4)}) + X(e^{j(\theta + \pi/4)}) ] $.

Hw9 ECE301Fall2008mboutin.JPG

Alumni Liaison

Recent Math PhD now doing a post-doctorate at UC Riverside.

Kuei-Nuan Lin