CompenNet++: End-to-End Full Projector Compensation
Bingyao Huang, Haibin Ling
摘要
Full projector compensation aims to modify a projector input image such that it can compensate for both geometric and photometric disturbance of the projection surface. Traditional methods usually solve the two parts separately, although they are known to correlate with each other. In this paper, we propose the first end-to-end solution, named CompenNet++, to solve the two problems jointly. Our work non-trivially extends CompenNet [15], which was recently proposed for photometric compensation with promising performance. First, we propose a novel geometric correction subnet, which is designed with a cascaded coarse-to-fine structure to learn the sampling grid directly from photometric sampling images. Second, by concatenating the geometric correction subset with CompenNet, Com-penNet++ accomplishes full projector compensation and is end-to-end trainable. Third, after training, we significantly simplify both geometric and photometric compensation parts, and hence largely improves the running time efficiency. Moreover, we construct the first setup-independent full compensation benchmark to facilitate the study on this topic. In our thorough experiments, our method shows clear advantages over previous arts with promising compensation quality and meanwhile being practically convenient. * Corresponding author. 1 In the rest of the text, we call it full compensation for conciseness.
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引用它的顶会 Paper7
- DeProCams: Simultaneous Relighting, Compensation and Shape Reconstruction for Projector-Camera SystemsBingyao Huang, Haibin LingIEEE VR 2021 · 被引用 30 次
- CompenHR: Efficient Full Compensation for High-resolution ProjectorYuxi Wang, Haibin Ling, Bingyao HuangIEEE VR 2023 · 被引用 17 次
- SPAA: Stealthy Projector-based Adversarial Attacks on Deep Image ClassifiersBingyao Huang, Haibin LingIEEE VR 2022 · 被引用 16 次
- Extended Depth-of-Field Projector using Learned Diffractive OpticsYuqi Li, Qiang Fu, Wolfgang HeidrichIEEE VR 2023 · 被引用 10 次
- DPCS: Path Tracing-Based Differentiable Projector-Camera SystemsJijiang Li, Qingyue Deng, Haibin Ling, Bingyao HuangIEEE VR 2025 · 被引用 4 次
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- DiffPC: Diffusion-Based Projector Photometric CompensationYuxi Wang, Haibin Ling, Bingyao HuangIEEE VR 2026
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