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基于日盲紫外成像探测器的光子计数算法研究
引用本文:杨锋,阮莹,吕扬,常文治,顾燕,赵维骏,郭一亮,杜非,朱波,焦国力,王广真.基于日盲紫外成像探测器的光子计数算法研究[J].红外技术,2022,44(3):231-235.
作者姓名:杨锋  阮莹  吕扬  常文治  顾燕  赵维骏  郭一亮  杜非  朱波  焦国力  王广真
作者单位:1.北方夜视技术股份有限公司, 江苏 南京 211106
基金项目:国家电网有限公司总部科技项目资助(GIS局部放电高准确度光、电感知技术研究及应用,52130420000J);
摘    要:为了完成对日盲紫外电晕信号的定量分析,本文设计了基于时间域的弥散圆斑光子计数算法来对成像系统所采集的图像进行量化分析。首先阐述了单光子探测的原理以及光子计数原理;然后设计了基于日盲紫外ICMOS的成像探测系统,为了满足荧光屏的余晖响应,优化了CMOS驱动,使得帧频可达390 fps;然后通过分析传统的连通域光子计数算法,提出了基于时间域的弥散圆斑光子计数算法;通过仿真实验,可知该算法较传统的技术算法具有更高的准确性;最后通过对紫外灯源的实验,验证了所设计的光子计数算法可以在成像探测系统中硬件实现,并且计数的效果良好。

关 键 词:日盲紫外    光子计数    时间域
收稿时间:2020-04-14

Research on Photon Counting Algorithm Based on Solar Blind Ultraviolet Imaging Detector
YANG Feng,RUAN Ying,LYU Yang,CHANG Wenzhi,GU Yan,ZHAO Weijun,GUO Yiliang,DU Fei,ZHU Bo,JIAO Guoli,WANG Guangzhen.Research on Photon Counting Algorithm Based on Solar Blind Ultraviolet Imaging Detector[J].Infrared Technology,2022,44(3):231-235.
Authors:YANG Feng  RUAN Ying  LYU Yang  CHANG Wenzhi  GU Yan  ZHAO Weijun  GUO Yiliang  DU Fei  ZHU Bo  JIAO Guoli  WANG Guangzhen
Affiliation:1.North Night Vision Technology Co. LTD., Nanjing 211106, China2.Electric Power Research Institute, SGCC, Fuzhou 350007, China3.China Electric Power Research Institute, Beijing 100192, China
Abstract:To complete the quantitative analysis of the solar-blind ultraviolet corona signal, a time-domain diffuse round-spot photon-counting algorithm is designed to analyze the image collected by the imaging system. First, the principles of single-photon detection and photon counting are described; second, an imaging detection system based on solar-blind ultraviolet ICMOS is designed. To meet the afterglow response of the screen, the CMOS driver is optimized to make the frame rate up to 390 fps. Then, by analyzing the traditional connected domain photon counting algorithm, a diffuse round spot photon counting algorithm based on the time domain is proposed, and experiments show that the algorithm designed in this study has higher accuracy than the traditional technical algorithm. Finally, through an experiment with an ultraviolet lamp source, it is verified that the designed photon counting algorithm can be implemented in the hardware of the imaging detection system, and the counting effect is good.
Keywords:
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