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== PERIODIC AND NON-PERIODIC DT SIGNALS FROM A CT SIGNAL ==
 
== PERIODIC AND NON-PERIODIC DT SIGNALS FROM A CT SIGNAL ==
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<pre>
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%ECE 301
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%Daniel Barjum
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%HW 2A
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clear
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clc
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%periodic CT signal
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f = 1;
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t = 0:0.001:10;
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x = real(exp(j*2*pi*f*t));
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subplot(3,1,1);
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plot(t,x)
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title('e^{(j*2\pi*f*)t} periodic CT signal');
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%periodic DT signal
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f = 1/(2*pi);
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n = 0:1:10;
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x = real(exp(j*2*pi*f*n));
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subplot(3,1,2);
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stem(n,x)
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title('e^{(j*2\pi*f*)t} periodic DT signal');
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%non - periodic DT signal
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f = pi - 3;
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n = 0:1:10;
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x = real(exp(j*2*pi*f*n));
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subplot(3,1,3);
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stem(n,x)
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title('e^{(j*2\pi*f*)t} non-periodic DT signal');
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<\pre>
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[[HW_2B PLOTS_ECE301Fall2008mboutin]]

Revision as of 17:43, 12 September 2008

PERIODIC AND NON-PERIODIC DT SIGNALS FROM A CT SIGNAL

%ECE 301
%Daniel Barjum
%HW 2A

clear
clc

%periodic CT signal

f = 1;
t = 0:0.001:10;
x = real(exp(j*2*pi*f*t));
subplot(3,1,1);
plot(t,x)
title('e^{(j*2\pi*f*)t} periodic CT signal');

%periodic DT signal

f = 1/(2*pi);
n = 0:1:10;
x = real(exp(j*2*pi*f*n));
subplot(3,1,2);
stem(n,x)
title('e^{(j*2\pi*f*)t} periodic DT signal');

%non - periodic DT signal

f = pi - 3;
n = 0:1:10;
x = real(exp(j*2*pi*f*n));
subplot(3,1,3);
stem(n,x)
title('e^{(j*2\pi*f*)t} non-periodic DT signal');
<\pre>

[[HW_2B PLOTS_ECE301Fall2008mboutin]]

Alumni Liaison

Ph.D. on Applied Mathematics in Aug 2007. Involved on applications of image super-resolution to electron microscopy

Francisco Blanco-Silva