ASN10 - Quadrature sampling demonstration: Difference between revisions
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[[Jodi Hodge|Back to my home page]] | [[Jodi Hodge|Back to my home page]] | ||
Assignment was actually done in class by professor. Classmate [[Max Woesner ]] has posted the Octave code and plot. | |||
In Octave we were to plot | |||
<math> \frac{2}{T} \sum_{n=1}^\infty sin\bigg (\frac{2 \pi nt}{T}\bigg) \!</math><br><br> | |||
<pre> | |||
clear all; | |||
close all; | |||
sum = 0; | |||
T = 1; | |||
t = -T:0.0001:T; | |||
N = 1000; | |||
for n = 1:N; | |||
if n==0 | |||
h = 0; | |||
else | |||
h = 2/T; | |||
end | |||
sum = sum+h*sin(2*pi*n*t/T); | |||
end | |||
plot(t,sum) | |||
title('Quadrature Sampling Waveform') | |||
xlabel('time(T)') | |||
ylabel('Sampling Waveform') | |||
</pre><br> | |||
[[Image:Quadrature sampling.jpg]]<br> | |||
Latest revision as of 18:20, 18 December 2009
Assignment was actually done in class by professor. Classmate Max Woesner has posted the Octave code and plot.
In Octave we were to plot
clear all;
close all;
sum = 0;
T = 1;
t = -T:0.0001:T;
N = 1000;
for n = 1:N;
if n==0
h = 0;
else
h = 2/T;
end
sum = sum+h*sin(2*pi*n*t/T);
end
plot(t,sum)
title('Quadrature Sampling Waveform')
xlabel('time(T)')
ylabel('Sampling Waveform')
