DocumentCode
1123832
Title
Optimal Edge Detector Design I: Parameter Selection and Noise Effects
Author
Lunscher, Wolfram H.H.J. ; Beddoes, Michael P.
Author_Institution
Develcon Electronics Limited, Saskatoon, Canada.
Issue
2
fYear
1986
fDate
3/1/1986 12:00:00 AM
Firstpage
164
Lastpage
177
Abstract
This paper comments on the optimality of the Laplacian of a Gaussian edge detection filter which localizes edges through zero crossings in the filtered image. The arguments of both Marr and Hildreth, and Dickey and Shanmugam are reviewed to establish that the filter is optimal in the sense of maximizing output image energy near edge features. This filter´s principal advantage over other edge detectors is that its response is user-adjustable through selection of a single parameter, the Gaussian standard deviation. However, no clear method for the selection of this parameter has been provided. The problem is addressed here by applying the filter to two ideal periodic edge models blurred by a Gaussian distribution point-spread function. The observed response to the edge spacing and blur standard deviation is then translated into a filter parameter design procedure. The problems of optimum filter performance in the presence of additive Gaussian noise are then addressed. The problem of selecting the sampled filter´s coefficient word size is dealt with in a companion paper.
Keywords
Additive noise; Band pass filters; Detectors; Filtering theory; Gaussian distribution; Gaussian noise; Image edge detection; Laplace equations; Noise reduction; Optical noise; Edge detection; bandpass image filters; edge detection accuracy; edge detector design; edge models; image edge analysis; optimal edge detection; optimal edge enhancement filters;
fLanguage
English
Journal_Title
Pattern Analysis and Machine Intelligence, IEEE Transactions on
Publisher
ieee
ISSN
0162-8828
Type
jour
DOI
10.1109/TPAMI.1986.4767770
Filename
4767770
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