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Free-running vs. Synchronous: Single-Photon Lidar for High-flux 3D Imaging

Free-running vs. Synchronous: Single-Photon Lidar for High-flux 3D Imaging

来源:Arxiv_logoArxiv
英文摘要

Conventional wisdom suggests that single-photon lidar (SPL) should operate in low-light conditions to minimize dead-time effects. Many methods have been developed to mitigate these effects in synchronous SPL systems. However, solutions for free-running SPL remain limited despite the advantage of reduced histogram distortion from dead times. To improve the accuracy of free-running SPL, we propose a computationally efficient joint maximum likelihood estimator of the signal flux, the background flux, and the depth using only histograms, along with a complementary regularization framework that incorporates a learned point cloud score model as a prior. Simulations and experiments demonstrate that free-running SPL yields lower estimation errors than its synchronous counterpart under identical conditions, with our regularization further improving accuracy.

Ruangrawee Kitichotkul、Shashwath Bharadwaj、Joshua Rapp、Yanting Ma、Alexander Mehta、Vivek K Goyal

光电子技术电子技术应用

Ruangrawee Kitichotkul,Shashwath Bharadwaj,Joshua Rapp,Yanting Ma,Alexander Mehta,Vivek K Goyal.Free-running vs. Synchronous: Single-Photon Lidar for High-flux 3D Imaging[EB/OL].(2025-07-12)[2025-07-22].https://arxiv.org/abs/2507.09386.点此复制

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