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Sunlight-proof optical distance measurements with a dual-line lock-in time-of-flight sensor

机译:使用双线锁定飞行时间传感器进行防日光光学距离测量

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This work describes time-of-flight distance measurements with a line sensor based on the correlation principle. It is capable of suppressing maximum bright sunlight and even more electronically in each pixel autonomously without using any optical filters. The optical fill factor of a pixel is 58% embodying a 100 × 100 μm~2 photodiode. Working principle of the pixel circuit and the mechanism for suppression of ambient illumination as well as physical limitation of accuracy are discussed. Characterizations of the single-pixel performance with 650 nm laser and 850 nm LED sources with optical output powers of 1 mW and 900 mW, respectively, are presented. Finally, measured characteristics of the line sensor for distances up to 3.2 m are shown. The standard deviation is below 2 cm up to 1.2 m at a measurement time of 50 ms per distance point and the near-infrared LED illumination.
机译:这项工作描述了基于相关原理的线传感器的飞行时间距离测量。它能够在不使用任何滤光镜的情况下,自动抑制每个像素的最大日照量,甚至在电子方面甚至更多。像素的光学填充率为58%,其中包含100×100μm〜2的光电二极管。讨论了像素电路的工作原理和抑制环境照度的机制以及精度的物理限制。分别介绍了650 nm激光和850 nm LED光源的光输出功率分别为1 mW和900 mW的单像素性能。最后,显示了距离达3.2 m的线传感器的测量特性。在每个距离点50 ms的测量时间和近红外LED照明下,标准偏差在2 cm以下,最大为1.2 m。

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