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Optical system design for light detection and ranging with ultra-wide field-of-view using liquid lenses

机译:光学系统设计用于光检测和使用液体镜片的超宽视野

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The light detection and ranging (LiDAR) technology is based on irradiating near-infrared light and measuring the time-of-flight of the scattered light in an object. This technology is becoming increasingly important, as the requirement of three-dimensional camera technology for future autonomous vehicles is on the rise. In this study, we propose an ultra-wide field-of-view (FOV) optical system for LiDAR that can sequentially scan a beam emitted from a high power laser through a small beam steering system using a liquid lens and a fisheye lens. The proposed optical system consists of a series of liquid lenses for beam steering, a commercial fisheye lens with a wide FOV, and a relay optics to effectively conjugate the intermediate image planes of the two lens systems. To verify theoretical feasibility, we have designed a practical optical system with an FOV of approximately 170 degrees, which is much higher than the FOVs in any other non-rotating LiDAR systems.
机译:光检测和测距(LIDAR)技术基于照射近红外光并测量物体中的散射光的飞行时间。 这项技术变得越来越重要,因为未来自治车辆的三维相机技术的要求正在上升。 在该研究中,我们提出了一种用于LIDAR的超宽视野(FOV)光学系统,其可以顺序地扫描从高功率激光器通过使用液体透镜和鱼眼镜头的小型光束转向系统发射的光束。 所提出的光学系统包括一系列用于光束转向的液体透镜,一种具有宽FOV的商业鱼眼镜头,以及用于有效地将两个透镜系统的中间图像平面共轭的中继光学器件。 为了验证理论可行性,我们设计了一种具有大约170度的FOV的实用光学系统,其远高于任何其他非旋转潮流雷达系统中的FOV。

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