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\right]
 
\right]
 
</math>
 
</math>
with <math>\lambda = 0.5</math>.
+
 
  
 
[[Image:edgedetectfilterfrequencyresponse.png]]
 
[[Image:edgedetectfilterfrequencyresponse.png]]
  
Plot of the frequency response of the filter:
+
Plot of the frequency response of the following filter, with <math>\lambda = 0.5</math>.:
 
    
 
    
 
<math>
 
<math>

Latest revision as of 12:50, 26 November 2014


DSFT of some basic filters

Used in ECE438


Plot of the frequency response of the average filter:

$ h(k,l)=\frac{1}{16}\left[ \begin{array}{ccc}1& 2 & 1\\ 2 &4 &2 \\ 1 & 2 & 1 \end{array} \right] $

Averagefilterfrequencyresponse.png

Plot of the frequency response of the filter:

$ h(k,l)=\frac{1}{9}\left[\begin{array}{ccc}-1& -1 & -1\\ -1 &8 &-1 \\ -1 & -1 & -1 \end{array} \right] $


Edgedetectfilterfrequencyresponse.png

Plot of the frequency response of the following filter, with $ \lambda = 0.5 $.:

$ h(k,l)=\frac{1}{9}\left[\begin{array}{ccc}-\lambda & -\lambda & -\lambda\\ -\lambda &9+8 \lambda & -\lambda \\ -\lambda & -\lambda & -\lambda \end{array} \right] $

Unsharpmaskfrequencyresponse.png

Links


Back to ECE438 Fall 2010

Back to ECE438 Fall2009

Alumni Liaison

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

Buyue Zhang