DocumentCode :
57454
Title :
Quantitative Error Analysis of Bilateral Filtering
Author :
Senjian An ; Boussaid, Farid ; Bennamoun, Mohammed ; Sohel, Ferdous
Author_Institution :
Sch. of Comput. Sci. & Software Eng., Univ. of Western Australia, Crawley, WA, Australia
Volume :
22
Issue :
2
fYear :
2015
fDate :
Feb. 2015
Firstpage :
202
Lastpage :
206
Abstract :
One of the fastest acceleration techniques for bilateral image filtering is the real time O(1) quantization method proposed by Yang 2009, which first computes some Principal Bilateral Filtered Image Components (PBFICs) and then applies linear interpolation to estimate the filtered output images. There is a trade-off between accuracy and efficiency in selecting the number of PBFICs: the more PBFICs are used, the higher the accuracy, and the higher the computational cost. A question arises: how many PBFICs are required to achieve a certain level of accuracy? In this letter, we address this question by investigating the properties of bilateral filtering and deriving the linear interpolation error bounds when only a subset of PBFICs is used. The provided theoretical analysis indicates that the necessary number of PBFICs for user-provided precision depends on the range kernel and, for typical Gaussian range kernels, a small percentage (typically less than 4%) of the PBFICs are enough for good approximations.
Keywords :
filtering theory; image processing; interpolation; quantisation (signal); Gaussian range kernel; PBFIC subset; acceleration technique; computational cost; filtered output image estimation; linear interpolation error bound; principal bilateral filtered image components; quantitative error analysis; real time O(1) quantization method; theoretical analysis; user-provided precision; Accuracy; Error analysis; Image processing; Interpolation; Kernel; Real-time systems; Bilateral filtering; linear interpolation; quantitative error analysis;
fLanguage :
English
Journal_Title :
Signal Processing Letters, IEEE
Publisher :
ieee
ISSN :
1070-9908
Type :
jour
DOI :
10.1109/LSP.2014.2353694
Filename :
6892949
Link To Document :
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