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<center>[[Image:fig2_color_mh.png|750px|thumb|left|Fig 2: Scatter plots and Contours. All contours are at Mahalanobis distance 1. (a) Original white density of '''W''', (b) scaled density of '''Y''', (c) colored density of '''X'''.]]</center>
 
<center>[[Image:C21_5.png|Fig 3: Summary diagram of whitening and coloring process.]]</center>
 
<center>[[Image:C21_5.png|Fig 3: Summary diagram of whitening and coloring process.]]</center>
  
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== '''References''' ==
 
== '''References''' ==
  
[1]. Charles A. Bouman, [https://engineering.purdue.edu/~bouman/grad-labs/Eigen-Image-Analysis/pdf/lab.pdf ''Digital Image Processing Laboratory: Eigen-decomposition of Images'']. February 22, 2013
 
  
 
[2]. [https://engineering.purdue.edu/~mboutin/ Mireille Boutin], "ECE662: Statistical Pattern Recognition and Decision Making Processes," Purdue University, Spring 2014.
 
[2]. [https://engineering.purdue.edu/~mboutin/ Mireille Boutin], "ECE662: Statistical Pattern Recognition and Decision Making Processes," Purdue University, Spring 2014.
  
[3]. Gilbert Strang,  ''Linear Algebra and its Applications''. Thomson Brooks/Cole. 4th Edition, 2006.
 
  
 
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Revision as of 16:19, 5 April 2014

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Fig 2: Scatter plots and Contours. All contours are at Mahalanobis distance 1. (a) Original white density of W, (b) scaled density of Y, (c) colored density of X.
Fig 3: Summary diagram of whitening and coloring process.

References

[2]. Mireille Boutin, "ECE662: Statistical Pattern Recognition and Decision Making Processes," Purdue University, Spring 2014.



Alumni Liaison

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

Buyue Zhang