Deep Variational Bayesian Modeling of Haze Degradation Process

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4
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5

초록

Relying on the representation power of neural networks, most recent works have often neglected several factors involved in haze degradation, such as transmission (the amount of light reaching an observer from a scene over distance) and atmospheric light. These factors are generally unknown, making dehazing problems ill-posed and creating inherent uncertainties. To account for such uncertainties and factors involved in haze degradation, we introduce a variational Bayesian framework for single image dehazing. We propose to take not only a clean image and but also transmission map as latent variables, the posterior distributions of which are parameterized by corresponding neural networks: dehazing and transmission networks, respectively. Based on a physical model for haze degradation, our variational Bayesian framework leads to a new objective function that encourages the cooperation between them, facilitating the joint training of and thereby boosting the performance of each other. In our framework, a dehazing network can estimate a clean image independently of a transmission map estimation during inference, introducing no overhead. Furthermore, our model-agnostic framework can be seamlessly incorporated with other existing dehazing networks, greatly enhancing the performance consistently across datasets and models.

키워드

Computer visionImage dehazingImage processingMachine learningVariational Bayesian methodBayesian networksDeep learningDemulsificationLearning systemsLight transmission
제목
Deep Variational Bayesian Modeling of Haze Degradation Process
저자
Im, Eun WooShin, JunsungBaik, SungyongKim, Tae Hyun
DOI
10.1145/3583780.3614838
발행일
2023-10
유형
Proceedings Paper
저널명
PROCEEDINGS OF THE 32ND ACM INTERNATIONAL CONFERENCE ON INFORMATION AND KNOWLEDGE MANAGEMENT, CIKM 2023
페이지
895 ~ 904