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ScatterNeRF: Seeing Through Fog with Physically-Based Inverse Neural Rendering.

, , , , , and . ICCV, page 17911-17922. IEEE, (2023)

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Robustness Against Unknown Noise for Raw Data Fusing Neural Networks., , , , and . ITSC, page 2177-2184. IEEE, (2018)Pixel-Accurate Depth Evaluation in Realistic Driving Scenarios., , , , and . 3DV, page 95-105. IEEE, (2019)A Benchmark for Lidar Sensors in Fog: Is Detection Breaking Down?, , and . CoRR, (2019)HINT: Learning Complete Human Neural Representations from Limited Viewpoints., , , , and . IV, page 1556-1563. IEEE, (2024)A Benchmark for Lidar Sensors in Fog: Is Detection Breaking Down?, , and . Intelligent Vehicles Symposium, page 760-767. IEEE, (2018)Gated2Depth: Real-Time Dense Lidar From Gated Images., , , and . ICCV, page 1506-1516. IEEE, (2019)LiDAR-in-the-Loop Hyperparameter Optimization., , , , and . CVPR, page 13404-13414. IEEE, (2023)ScatterNeRF: Seeing Through Fog with Physically-Based Inverse Neural Rendering., , , , , and . ICCV, page 17911-17922. IEEE, (2023)Radar Fields: Frequency-Space Neural Scene Representations for FMCW Radar., , , , , , , , , and 2 other author(s). SIGGRAPH (Conference Paper Track), page 130. ACM, (2024)Split-Aperture 2-in-1 Computational Cameras., , , , , , , , and . ACM Trans. Graph., 43 (4): 141:1-141:19 (July 2024)