(New page: Here I use the CT signal x=sin(2*pi*t): Image:Simple_sin_function.jpg Producing a periodic discrete time signal from the signal above: Image:Simple_sin_function_DT.jpg Changing...)
 
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Here I use the CT signal x=sin(2*pi*t):
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Here I use the CT signal x=sin(2*pi*t) with a period of 1 sec:
  
 
[[Image:Simple_sin_function_ECE301Fall2008mboutin.jpg]]
 
[[Image:Simple_sin_function_ECE301Fall2008mboutin.jpg]]
  
Producing a periodic discrete time signal from the signal above:
+
Producing a periodic discrete time signal from the signal above with sampling rate SR=0.01:
  
 
[[Image:Simple_sin_function_DT_ECE301Fall2008mboutin.jpg]]
 
[[Image:Simple_sin_function_DT_ECE301Fall2008mboutin.jpg]]
  
Changing the sampling rate to produce a non-periodic DT signal:
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Changing the sampling rate to produce a non-periodic DT signal SR=0.09:
  
 
[[Image:Non_periodic_simple_sin_function_DT_ECE301Fall2008mboutin.jpg]]
 
[[Image:Non_periodic_simple_sin_function_DT_ECE301Fall2008mboutin.jpg]]

Revision as of 09:59, 11 September 2008

Here I use the CT signal x=sin(2*pi*t) with a period of 1 sec:

Simple sin function ECE301Fall2008mboutin.jpg

Producing a periodic discrete time signal from the signal above with sampling rate SR=0.01:

Simple sin function DT ECE301Fall2008mboutin.jpg

Changing the sampling rate to produce a non-periodic DT signal SR=0.09:

Non periodic simple sin function DT ECE301Fall2008mboutin.jpg

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Basic linear algebra uncovers and clarifies very important geometry and algebra.

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