(New page: for CT <math>y(t) = x(t) * h(t) \ \ \,</math>   <math>{=}\ \int_{-\infty}^{\infty} x(\tau)\cdot h(t - \tau)\, d\tau</math>)
 
 
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for CT
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=Definition of CT convolution=
  
 
<math>y(t) = x(t) * h(t) \ \ \,</math> &nbsp;
 
<math>y(t) = x(t) * h(t) \ \ \,</math> &nbsp;
 
<math>{=}\ \int_{-\infty}^{\infty} x(\tau)\cdot h(t - \tau)\, d\tau</math>
 
<math>{=}\ \int_{-\infty}^{\infty} x(\tau)\cdot h(t - \tau)\, d\tau</math>

Latest revision as of 11:01, 30 January 2011

Definition of CT convolution

$ y(t) = x(t) * h(t) \ \ \, $   $ {=}\ \int_{-\infty}^{\infty} x(\tau)\cdot h(t - \tau)\, d\tau $

Alumni Liaison

Ph.D. 2007, working on developing cool imaging technologies for digital cameras, camera phones, and video surveillance cameras.

Buyue Zhang