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Published in: Microsystem Technologies 4/2021

27-04-2019 | Technical Paper

Image contrast expand enhancement system based on fuzzy theory

Authors: Cheng-Yi Yu, Hsueh-Yi Lin, Cheng-Jian Lin

Published in: Microsystem Technologies | Issue 4/2021

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Abstract

In the current age of information explosion, the extraction of relevant data from a large information pool, which includes images, has become crucial. Because of the easy availability of imaging devices, millions of images are being added to the image pool every day. Current image contrast enhancement methods have some drawbacks. First, for images captured in extreme lighting conditions, such as backlit images and extremely bright or dark images, extant image contrast enhancement methods cannot retain the brightness distribution details of the original image, resulting in image distortion. Second, the methods can only achieve global contrast enhancement but not local contrast enhancement. Third, these methods cannot satisfy the Human Visual System mapping curve, resulting in nonsmooth or distorted images. In this study, a novel image expand enhancement system based on fuzzy theory is proposed. This system has two major features: (1) the expand model is designed such that the correlations between light intensity and the intensity of an image captured in this light are considered to achieve local contrast enhancement, and (2) an extreme case of images processing step that is capable of enhancing. The proposed model has a fusion framework; therefore, the image fusion model can represent the relationship between the original image and the expanded image. Next, the fusion model describes some expected statistical properties of the desired intensity of the expand image. Thus, the details of the original image are retained. Experimental results revealed that the proposed algorithm is capable of adaptively enhancing the contrast of the original image while simultaneously extruding the details of objects in the image. The resulting enhanced image can be effectively used for image information analysis and other image-processing tasks.

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Literature
go back to reference Kekre HB, Thepade SD (2009) Improving the performance of image retrieval using partial coefficients of transformed image. Int J Inform Retr Ser Publ 2(1):72–79 (ISSN: 0974-6285) Kekre HB, Thepade SD (2009) Improving the performance of image retrieval using partial coefficients of transformed image. Int J Inform Retr Ser Publ 2(1):72–79 (ISSN: 0974-6285)
go back to reference Xu L, Roux M, Mingyi H, Schmitt F (2008) A new method of image fusion based on redundant wavelet transform. In: Proceedings of the IEEE fifth international conference on visual information engineering, 29 July–1 Aug, pp 12–17. https://doi.org/10.1049/cp:20080275 Xu L, Roux M, Mingyi H, Schmitt F (2008) A new method of image fusion based on redundant wavelet transform. In: Proceedings of the IEEE fifth international conference on visual information engineering, 29 July–1 Aug, pp 12–17. https://​doi.​org/​10.​1049/​cp:​20080275
go back to reference Yu CY, Lin HY, Lin CJ, Lin CY (2015) image contrast enhancement using power function algorithm based on row scale oriented. ICIC Express Lett 9(2):377–384 Yu CY, Lin HY, Lin CJ, Lin CY (2015) image contrast enhancement using power function algorithm based on row scale oriented. ICIC Express Lett 9(2):377–384
Metadata
Title
Image contrast expand enhancement system based on fuzzy theory
Authors
Cheng-Yi Yu
Hsueh-Yi Lin
Cheng-Jian Lin
Publication date
27-04-2019
Publisher
Springer Berlin Heidelberg
Published in
Microsystem Technologies / Issue 4/2021
Print ISSN: 0946-7076
Electronic ISSN: 1432-1858
DOI
https://doi.org/10.1007/s00542-019-04436-w

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