Paper
19 October 2016 Detection of cat-eye effect echo based on unit APD
Dong-Sheng Wu, Peng Zhang, Wen-Gang Hu, Jia-Ju Ying, Jie Liu
Author Affiliations +
Proceedings Volume 10153, Advanced Laser Manufacturing Technology; 101530J (2016) https://doi.org/10.1117/12.2245809
Event: International Symposium on Optoelectronic Technology and Application 2016, 2016, Beijing, China
Abstract
The cat-eye effect echo of optical system can be detected based on CCD, but the detection range is limited within several kilometers. In order to achieve long-range even ultra-long-range detection, it ought to select APD as detector because of the high sensitivity of APD. The detection system of cat-eye effect echo based on unit APD is designed in paper. The implementation scheme and key technology of the detection system is presented. The detection performances of the detection system including detection range, detection probability and false alarm probability are modeled. Based on the model, the performances of the detection system are analyzed using typical parameters. The results of numerical calculation show that the echo signal-to-noise ratio is greater than six, the detection probability is greater than 99.9% and the false alarm probability is less tan 0.1% within 20 km detection range. In order to verify the detection effect, we built the experimental platform of detection system according to the design scheme and carry out the field experiments. The experimental results agree well with the results of numerical calculation, which prove that the detection system based on the unit APD is feasible to realize remote detection for cat-eye effect echo.
© (2016) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Dong-Sheng Wu, Peng Zhang, Wen-Gang Hu, Jia-Ju Ying, and Jie Liu "Detection of cat-eye effect echo based on unit APD", Proc. SPIE 10153, Advanced Laser Manufacturing Technology, 101530J (19 October 2016); https://doi.org/10.1117/12.2245809
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KEYWORDS
Probability theory

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