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A stochastic approach for optimizing the required number of sub-pixels in Silicon Photomultipiler (SiPM) for optical radar applications (LiDAR)

机译:用于优化光雷达应用(LIDAR)的硅光致电瓶(SIPM)中所需数量的子像素数量的随机方法

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CMOS Silicon Photomultiplier (SiPM) composed of a mosaic array of SPADs (single photon avalanche diode in Geiger Mode) combined in parallel, is the building block of optical radars based on a LIDAR (light detection and ranging). An open essential design parameter is the required number of sub-pixels for adequate detection of a packet of n photons, taking into consideration that each sub-pixel, composed of a single SPAD, can detect only the first photon. This study evaluates this design parameter based on a stochastic approach, where the random number of incident photons as well as the detection probability of each SPAD is taken into consideration. An expression for Signal to Noise Ratio (SNR) is developed, yielding the optimal number of sub-pixels required for a practical implementation of a LIDAR.
机译:CMOS硅光电倍增管(SIPM)由马赛克阵列(岩石模式中的单光子雪崩二极管)并联组成,是基于激光雷达(光检测和测距)的光学雷达的构建块。开放的基本设计参数是用于足够检测到N个光子的分组的所需数量的子像素,考虑到由单个SPAD组成的每个子像素,可以仅检测第一光子。本研究评估了基于随机方法的这种设计参数,其中发生了活动光子的随机数,以及每个选曲的检测概率。开发了用于信噪比(SNR)的表达式,产生LIDAR的实际实现所需的最佳子像素数。

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