Removing backscatter to enhance the visibility of underwater object

Underwater vision enhancement via backscatter removing is widely used in ocean engineering. With increasing ocean exploration, underwater image processing has drawn more and more attention due to the important roles of video and image for obtain information. However, due to the existence of dust-lik...

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Main Author: Zhang, Hao
Other Authors: Lap Pui Chau
Format: Theses and Dissertations
Language:English
Published: 2016
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Online Access:http://hdl.handle.net/10356/68950
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-689502023-07-04T15:05:12Z Removing backscatter to enhance the visibility of underwater object Zhang, Hao Lap Pui Chau School of Electrical and Electronic Engineering DRNTU::Engineering Underwater vision enhancement via backscatter removing is widely used in ocean engineering. With increasing ocean exploration, underwater image processing has drawn more and more attention due to the important roles of video and image for obtain information. However, due to the existence of dust-like particles and light attenuation, underwater images and videos always suffer from the problems of low contrast and color distortion. In this thesis, we analyze the underwater light propagation process and propose an effective method to overcome the backscatter problem. Our method is based on the underwater optical model and image fusion. It mainly contains three steps, first, we decompose input image into reflectance and illuminance components; second, we utilize color correction technology and dehazing technology to handle these two components separately; finally, in order to rebuild result well, we applied the Gaussian and Laplacian pyramids based multi-scale fusion to reconstruct the target image while exposedness, saliency maps are utilized as weights to assist the fusion task. The experimental results show that our proposed method is able to greatly improve the quality of distorted underwater images. By introducing the underwater image quality metric measurements, we also analyze the intrinsic information and objective feature indexes of restored images via different methods. In general, our proposed method outperforms state of the art among sets of test images captured in different water environments and is demonstrated to be well-performed and effective. Master of Science (Communications Engineering) 2016-08-16T08:44:23Z 2016-08-16T08:44:23Z 2016 Thesis http://hdl.handle.net/10356/68950 en 73 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Engineering
spellingShingle DRNTU::Engineering
Zhang, Hao
Removing backscatter to enhance the visibility of underwater object
description Underwater vision enhancement via backscatter removing is widely used in ocean engineering. With increasing ocean exploration, underwater image processing has drawn more and more attention due to the important roles of video and image for obtain information. However, due to the existence of dust-like particles and light attenuation, underwater images and videos always suffer from the problems of low contrast and color distortion. In this thesis, we analyze the underwater light propagation process and propose an effective method to overcome the backscatter problem. Our method is based on the underwater optical model and image fusion. It mainly contains three steps, first, we decompose input image into reflectance and illuminance components; second, we utilize color correction technology and dehazing technology to handle these two components separately; finally, in order to rebuild result well, we applied the Gaussian and Laplacian pyramids based multi-scale fusion to reconstruct the target image while exposedness, saliency maps are utilized as weights to assist the fusion task. The experimental results show that our proposed method is able to greatly improve the quality of distorted underwater images. By introducing the underwater image quality metric measurements, we also analyze the intrinsic information and objective feature indexes of restored images via different methods. In general, our proposed method outperforms state of the art among sets of test images captured in different water environments and is demonstrated to be well-performed and effective.
author2 Lap Pui Chau
author_facet Lap Pui Chau
Zhang, Hao
format Theses and Dissertations
author Zhang, Hao
author_sort Zhang, Hao
title Removing backscatter to enhance the visibility of underwater object
title_short Removing backscatter to enhance the visibility of underwater object
title_full Removing backscatter to enhance the visibility of underwater object
title_fullStr Removing backscatter to enhance the visibility of underwater object
title_full_unstemmed Removing backscatter to enhance the visibility of underwater object
title_sort removing backscatter to enhance the visibility of underwater object
publishDate 2016
url http://hdl.handle.net/10356/68950
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