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DESIGN OF MECHALESS LIDAR OPTICAL SYSTEM WITH LARGE FOV USING LIQUID LENS AND FISHEYE LENS

机译:液面透镜和鱼眼镜头大视场无声激光光学系统的设计

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摘要

Mechaless LiDAR technology, which does not have a mechanical drive part, has been actively studied in order to increase the reliability of the LiDAR device at low cost and drive environment in order to more actively apply LiDAR technology to autonomous driving. Mechaless LiDAR technology, which has been mainly studied recently, includes 3D Flash LiDAR technology, MEMS mirror utilization method, and OPA (Optical Phased Array). However, these methods have not been developed rapidly as a key technology for achieving autonomous driving due to low stability of driving environment or remarkably low measurable distance and FOV (field of view) compared with mechanical LiDAR. In this study, we investigated the improvement of FOV by using a flux-deflecting liquid lens and a fisheye lens that can achieve fine spatial resolution through continuous voltage regulation. Based on the initial design results, it was examined that the FOV can be secured to 80 ° or more by utilizing a relatively simple fisheye lens composed of only spherical lenses.
机译:为了提高LiDAR设备在低成本和驱动环境下的可靠性,已经积极研究了不具有机械驱动部分的无机械LiDAR技术,以便更积极地将LiDAR技术应用于自动驾驶。最近主要研究的Mechaless LiDAR技术包括3D Flash LiDAR技术,MEMS反射镜利用方法和OPA(光学相控阵)。然而,由于驱动环境的稳定性低或与机械LiDAR相比可测量的距离和FOV(视野)极低,因此这些方法尚未迅速发展为实现自动驾驶的关键技术。在这项研究中,我们研究了使用通量偏转液体透镜和鱼眼镜头改善FOV的方法,该透镜可以通过连续的电压调节来实现良好的空间分辨率。根据最初的设计结果,研究发现通过使用仅由球面透镜组成的相对简单的鱼眼镜头,可以将FOV固定在80°或更高。

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