피코미터 프레임 카메라 필요해서 라이다보다 비쌀듯
그리고 자동차같은건 진동 세서 정확도 나오기가 힘들듯 정지상황에서도 안나오는데
Non-Line-of-Sight Imaging | Edmund Optics
Seeing around corners is no longer science fiction thanks to ultrafast lasers and sensitive cameras
https://www.edmundoptics.com/knowledge-center/trending-in-optics/non-line-of-sight-imaging/
Non-line-of-sight Imaging with Partial Occluders and Surface Normals | TOG 2019
Imaging objects obscured by occluders is a significant challenge for many applications. A camera that could “see around corners” could help improve navigation and mapping capabilities of autonomous vehicles or make search and rescue missions more effective. Time-resolved single-photon imaging systems have recently been demonstrated to record optical information of a scene that can lead to an estimation of the shape and reflectance of objects hidden from the line of sight of a camera. However, existing non-line-of-sight (NLOS) reconstruction algorithms have been constrained in the types of light transport effects they model for the hidden scene parts. We introduce a factored NLOS light transport representation that accounts for partial occlusions and surface normals. Based on this model, we develop a factorization approach for inverse time-resolved light transport and demonstrate high-fidelity NLOS reconstructions for challenging scenes both in simulation and with an experimental NLOS imaging system.
https://www.youtube.com/watch?v=nVoEZuFFMzA

David B. Lindell | Confocal non-line-of-sight imaging based on the light-cone transform
https://davidlindell.com/publications/nlos-lct

Seonglae Cho