测绘学报:英文版 · 2020年第2期36-44,共9页

Influence of Range Gate Width on Detection Probability and Ranging Accuracy of Single Photon Laser Altimetry Satellite

作者:Guoyuan LI,Fanghong YE,Xinming TANG,Dongping XIE,Jiapeng HUANG,Genhua HUANG

摘要:The influence of the single photon laser altimeter range-gate width on the detection probability and ranging accuracy is discussed and analyzed,according to the LiDAR equation,single photon detection equation and the Monte Carlo method to simulate the experiment.The simulated results show that the probability of detection is not affected by the range gate,while the probability of false alarm is relative to the gate width.When the gate width is 100 ns,the ranging accuracy can accord with the requirements of satellite laser altimeter.But when the range gate width exceeds 400 ns,ranging accuracy will decline sharply.The noise ratio will be more as long as the range gate to get larger,so the refined filtering algorithm during the data processing is important to extract the useful photons effectively.In order to ensure repeated observation of the same point for 25 times,we deduce the quantitative relation between the footprint size,footprint,and frequency repetition according to the parameters of ICESat-2.The related conclusions can provide some references for the design and the development of the domestic single photon laser altimetry satellite.

发文机构:Land Satellite Remote Sensing Application Center School of Resource and Environmental Sciences Key Laboratory of Space Active Opto-electronics Technology

关键词:satellitelaseraltimeterrangegaterangingaccuracydetectionprobabilitymontecarlosinglephotonlaser

分类号: TN2[电子电信—物理电子学]

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