刘 瑾,张鹏程,程绍伟,杨海马,赵红壮.基于双 PSD 视觉的空间光点位置测量研究[J].电子测量与仪器学报,2022,36(1):81-88
基于双 PSD 视觉的空间光点位置测量研究
Research on spatial spot position measurement based on dual PSD vision
  
DOI:
中文关键词:  位置敏感探测器(PSD)  双目视觉  空间光点  信号处理  位置测量
英文关键词:position sensitive detector (PSD)  binocular vision  spatial spot  signal processing  position measurement
基金项目:国家自然科学基金(U1831133,61701296)、科技创新2030 “新一代人工智能”重大项目(2020AAA0109301)资助
作者单位
刘 瑾 1. 上海工程技术大学电子电气工程学院 
张鹏程 1. 上海工程技术大学电子电气工程学院,2. 上海仪电(集团)有限公司中央研究院 
程绍伟 1. 上海工程技术大学电子电气工程学院 
杨海马 3. 上海理工大学光电信息与计算机工程学院 
赵红壮 1. 上海工程技术大学电子电气工程学院 
AuthorInstitution
Liu Jin 1. School of Electronic and Electrical Engineering, Shanghai University of Engineering Science 
Zhang Pengcheng 1. School of Electronic and Electrical Engineering, Shanghai University of Engineering Science,2. INESA(Group)Co. , Ltd. R&D Center 
Cheng Shaowei 1. School of Electronic and Electrical Engineering, Shanghai University of Engineering Science 
Yang Haima 3. School of Optical-Electrical and Computer Engineering, University of Shanghai for Science and Technology 
Zhao Hongzhuang 1. School of Electronic and Electrical Engineering, Shanghai University of Engineering Science 
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中文摘要:
      目前基于光学测量法的空间目标位姿探测系统主要采用单目视觉和双目立体视觉两种,其中双目视觉得益于利用仿生 学视差原理,通过光学三角测量法即可计算出目标的空间相对位置,从而得到广泛应用。 此外,针对于传统 CCD、CMOS 视觉相 机繁杂的图像处理过程,提出了将双目视觉原理与位置敏感探测器(PSD)结合应用于空间光点位置的探测方法,利用 PSD 探 测响应速度快、分辨率高等特性,将图像处理转换为光电探测器的信号处理过程,并搭建了具体的合作光点的位置探测系统。 实验结果表明,PSD 视觉相 X 和 Y 方向坐标波动均在±130 μm,且探测系统精准还原了空间光点在距离 1 000 mm 的 160 mm× 160 mm×200 mm 立方体空间内的运动轨迹,其定位误差为 4. 35 mm,随深度每增加 50 mm,误差增加约 27%,系统的平均误差为 7. 30 mm,稳定性较好。
英文摘要:
      At present, the spatial target position detection system based on optical measurement method mainly adopts monocular vision and binocular stereo vision, of which binocular vision benefits from the use of bionic parallax principle, and the spatial relative position of the target can be calculated by optical triangulation, which is widely used. In addition, in view of the complicated image processing process of traditional CCD and CMOS vision cameras, a detection method that combines the principle of binocular vision and PSD sensor to apply to the position of the light spot in space is proposed. The image processing is converted into the signal processing process of the photodetector, and a specific position detection system of the cooperative light spot is built. Experimental results show that the PSD visual phase X and Y direction coordinate fluctuations are within ± 130 μm, and the detection system accurately restores the motion trajectory of the spatial light point in the 160 mm×160 mm×200 mm cubic space at a distance of 1 000 mm, and its positioning error is 4. 35 mm, with each 50 mm increase in depth, the error increases by about 27%, and the average error of the system is 7. 30 mm, with good stability.
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