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Design and modeling of pulsed-laser three-dimensional imaging system inspired by compound and human hybrid eye

机译:复眼和人眼混合激发的脉冲激光三维成像系统的设计与建模

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A pulsed-laser three-dimensional imaging system inspired by compound and human hybrid eye is proposed. A diffractive optical element is used to enlarge field of view (FOV) of transmitting system and a receiving system consisting of a non-uniform microlens array, an aperture array, and an avalanche photodiode array is designed. The non-uniform microlens array is arranged on a curved surface to mimic large FOV feature of the compound eye. Meanwhile, the non-uniform microlens array is modeled to mimic space-variant resolution property of the human eye. On the basis of the proposed system, some simulation experiments are carried out. Results show that the entire FOV is up to 52°, and the resolution is 30?×?18. The proposed system has a high resolution in the center FOV and a low resolution in the peripheral FOV. The rotation and scaling invariances of the human eye are verified on the proposed system. The signal-to-noise ratio (SNR) increases with the increase in the number of rings and the maximum SNR locates at the outmost periphery area. This work is beneficial to the design of the pulsed laser three-dimensional imaging system with large FOV, high speed, and high resolution.
机译:提出了一种由复眼和人眼混合激发的脉冲激光三维成像系统。使用衍射光学元件来放大发射系统的视场(FOV),并设计了由不均匀的微透镜阵列,孔径阵列和雪崩光电二极管阵列组成的接收系统。非均匀微透镜阵列布置在曲面上,以模仿复眼的大FOV特征。同时,非均匀微透镜阵列被建模为模仿人眼的空间变化分辨率特性。在提出的系统的基础上,进行了一些仿真实验。结果表明,整个视场角高达52°,分辨率为30?×?18。所提出的系统在中心视场中具有高分辨率,而在外围视场中具有低分辨率。在提出的系统上验证了人眼的旋转和缩放不变性。信噪比(SNR)随环数的增加而增加,并且最大SNR位于最外围区域。这项工作有利于大视野,高速,高分辨率的脉冲激光三维成像系统的设计。

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