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= Lecture 36 Blog, [[ECE438]] Fall 2011, [[User:Mboutin|Prof. Boutin]] = | = Lecture 36 Blog, [[ECE438]] Fall 2011, [[User:Mboutin|Prof. Boutin]] = | ||
− | Wednesday November | + | Wednesday November 16, 2011 (Week 13) - See [[Lecture Schedule ECE438Fall11 Boutin|Course Outline]]. |
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Today we analyzed the frequency response of the average filter discussed in the [[Lecture35ECE438F11|previous lecture]]. More specifically we computed its discrete-space Fourier transform and looked at [[ECE_438_Fall_2009_mboutin_plotCSFTofbasicfilters|its plot]]. Using the separability of the filter greatly facilitated the computation of its Fourier transform. We discussed different ways to determine whether a filter is separable and how to separate it. We then considered another filter (edge detector). Although that filter is not separable, we were able to write it as a sum of two separable filters. | Today we analyzed the frequency response of the average filter discussed in the [[Lecture35ECE438F11|previous lecture]]. More specifically we computed its discrete-space Fourier transform and looked at [[ECE_438_Fall_2009_mboutin_plotCSFTofbasicfilters|its plot]]. Using the separability of the filter greatly facilitated the computation of its Fourier transform. We discussed different ways to determine whether a filter is separable and how to separate it. We then considered another filter (edge detector). Although that filter is not separable, we were able to write it as a sum of two separable filters. | ||
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[[Category:discrete-space Fourier transform]] | [[Category:discrete-space Fourier transform]] | ||
[[Category:digital signal processing]] | [[Category:digital signal processing]] | ||
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[[Category:ECE438]] | [[Category:ECE438]] | ||
+ | [[Category:signal processing]] | ||
+ | [[Category:ECE]] | ||
+ | [[Category:Blog]] |
Latest revision as of 05:32, 11 September 2013
Lecture 36 Blog, ECE438 Fall 2011, Prof. Boutin
Wednesday November 16, 2011 (Week 13) - See Course Outline.
Today we analyzed the frequency response of the average filter discussed in the previous lecture. More specifically we computed its discrete-space Fourier transform and looked at its plot. Using the separability of the filter greatly facilitated the computation of its Fourier transform. We discussed different ways to determine whether a filter is separable and how to separate it. We then considered another filter (edge detector). Although that filter is not separable, we were able to write it as a sum of two separable filters.
Action items
- Solve the following problems on Spectral Analysis of discrete-space (2D) signals and share your answers for feedback
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