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Performance analysis of ghost imaging lidar in background light environment 被引量:13

Performance analysis of ghost imaging lidar in background light environment
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摘要 The effect of background light on the imaging quality of three typical ghost imaging(GI) lidar systems(namely narrow pulsed GI lidar, heterodyne GI lidar, and pulse-compression GI lidar via coherent detection) is investigated. By computing the signal-to-noise ratio(SNR) of fluctuation-correlation GI, our analytical results, which are backed up by numerical simulations, demonstrate that pulse-compression GI lidar via coherent detection has the strongest capacity against background light, whereas the reconstruction quality of narrow pulsed GI lidar is the most vulnerable to background light. The relationship between the peak SNR of the reconstruction image andσ(namely, the signal power to background power ratio) for the three GI lidar systems is also presented, and theresults accord with the curve of SNR-σ. The effect of background light on the imaging quality of three typical ghost imaging (GI) lidar systems (namely narrow pulsed GI lidar, heterodyne GI lidar, and pulse-compression GI lidar via coherent detection) is investigated. By computing the signal-to-noise ratio (SNR) of fluctuation-correlation GI, our analytical results, which are backed up by numerical simulations, demonstrate that pulse-compression GI lidar via coherent detection has the strongest capacity against background light, whereas the reconstruction quality of narrow pulsed GI lidar is the most vulnerable to background light. The relationship between the peak SNR of the reconstruction image and sigma (namely, the signal power to background power ratio) for the three GI lidar systems is also presented, and the results accord with the curve of SNR-sigma. (C) 2017 Chinese Laser Press
出处 《Photonics Research》 SCIE EI 2017年第5期431-435,共5页 光子学研究(英文版)
基金 National Natural Science Foundation of China(NSFC)(61571427) Ministry of Science and Technology of the People’s Republic of China(MOST)(2013AA122901) Youth Innovation Promotion Association of the Chinese Academy of Sciences(2013162)
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