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Physical Model Guided Deep Image Deraining

Authors :
Zhu, Honghe
Wang, Cong
Zhang, Yajie
Su, Zhixun
Zhao, Guohui
Publication Year :
2020

Abstract

Single image deraining is an urgent task because the degraded rainy image makes many computer vision systems fail to work, such as video surveillance and autonomous driving. So, deraining becomes important and an effective deraining algorithm is needed. In this paper, we propose a novel network based on physical model guided learning for single image deraining, which consists of three sub-networks: rain streaks network, rain-free network, and guide-learning network. The concatenation of rain streaks and rain-free image that are estimated by rain streaks network, rain-free network, respectively, is input to the guide-learning network to guide further learning and the direct sum of the two estimated images is constrained with the input rainy image based on the physical model of rainy image. Moreover, we further develop the Multi-Scale Residual Block (MSRB) to better utilize multi-scale information and it is proved to boost the deraining performance. Quantitative and qualitative experimental results demonstrate that the proposed method outperforms the state-of-the-art deraining methods. The source code will be available at \url{https://supercong94.wixsite.com/supercong94}.<br />Comment: IEEE ICME2020

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2003.13242
Document Type :
Working Paper