Extreme Low-Light Environment-Driven Image Denoising Over Permanently Shadowed Lunar Regions With a Physical Noise Model
Ben Moseley, Valentin Tertius Bickel, Ignacio G. Lopez Francos, Loveneesh Rana
Abstract
Recently, learning-based approaches have achieved impressive results in the field of low-light image denoising. Some state of the art approaches employ a rich physical model to generate realistic training data. However, the performance of these approaches ultimately depends on the realism of the physical model, and many works only concentrate on everyday photography. In this work we present a denoising approach for extremely low-light images of permanently shadowed regions (PSRs) on the lunar surface, taken by the Narrow Angle Camera on board the Lunar Reconnaissance Orbiter satellite. Our approach extends existing learning-based approaches by combining a physical noise model of the camera with real noise samples and training image scene selection based on 3D ray tracing to generate realistic training data. We also condition our denoising model on the camera's environmental metadata at the time of image capture (such as the camera's temperature and age), showing that this improves performance. Our quantitative and qualitative results show that our method strongly outperforms the existing calibration routine for the camera and other baselines. Our results could significantly impact lunar science and exploration, for example by aiding the identification of surface water-ice and reducing uncertainty in rover and human traverse planning into PSRs.
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Install the CLIlune papers fulltext 8de3835b-e8c3-446c-a9f7-cfb44b593cafCited by top-tier papers2
- Gt-Mean Loss: a Simple Yet Effective Solution for Brightness Mismatch in Low-Light Image EnhancementJingxi Liao, Shijie Hao, Richang Hong, Meng WangICCV 2025 · 5 citations
- Physics-Guided ISO-Dependent Sensor Noise Modeling for Extreme Low-Light PhotographyYue Cao, Ming Liu, Shuai Liu, Xiaotao Wang et al.CVPR 2023
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