DocumentCode
1527112
Title
Efficient Operator for Local Energy Measurements to Enhance an Image Signal
Author
Cvetkovic, Sascha ; Schirris, Johan ; de With, P.H.N.
Author_Institution
Bosch Security Syst., Eindhoven, Netherlands
Volume
5
Issue
2
fYear
2011
fDate
4/1/2011 12:00:00 AM
Firstpage
217
Lastpage
229
Abstract
For real-time imaging with digital video cameras and high-quality display with TV systems, the obtained picture quality including visibility of details, local contrast, and absence of artifacts, is very important to ensure user quality acceptance. We present a multi-window real-time high-frequency enhancement scheme, in which gain is a non-linear function of the detail energy. Then we discuss the computation of commonly used local energy measurements and show that a selection of those measurements can be calculated efficiently. In our first contribution, we propose a new local energy measurement APS that can be calculated more efficiently than the existing metrics in a 2-D-separable fashion. In addition, we also show that the new APS measurement gives better performance than standard energy measurements. The second contribution is the use of local contrast and a modified contrast gain formula that can substantially improve the overall algorithm performance, especially when a high-level contrast enhancement is desired. Our algorithm trades off between added contrast and “halo” artifacts, resulting in a good balance between visibility of details and an acceptable level of artifacts. The new scheme can be successfully applied to cameras and TV systems to improve their visual quality.
Keywords
energy measurement; image enhancement; television displays; video cameras; APS measurement; TV systems; digital video cameras; high-quality display; image signal enhancement; local contrast; local energy measurements; modified contrast gain formula; multiwindow real-time high-frequency enhancement scheme; picture quality; real-time imaging; user quality acceptance; Local contrast enhancement; TV displays; local energy measurement; nonlinear sharpness enhancement;
fLanguage
English
Journal_Title
Selected Topics in Signal Processing, IEEE Journal of
Publisher
ieee
ISSN
1932-4553
Type
jour
DOI
10.1109/JSTSP.2010.2055831
Filename
5498908
Link To Document