OPTICS & OPTOELECTRONIC TECHNOLOGY, Volume. 22, Issue 3, 8(2024)
Design of Optical System for Multi-Channel Photon Counting Laser Radar for Lake Monitoring
[3] [3] Brenner A C,Dimarzio J P,Zwally H J,et al. Precision and accuracy of satellite radar and laser altimeter data over the continental ice sheets[J]. IEEE Transactions on Geoscience and Remote Sensing,2007,45(2):321-331.
[4] [4] Ma Y,Li S,Zhang W,et al. Theoretical ranging performance model and range walk error correction for photoncounting lidars with multiple detectors[J]. Optics Express,2018,26(12):15924.
[5] [5] Johnson S,Gatt P,Nichols T. Analysis of geiger-mode APD laser radars[C]. SPIE,2003,5086:359-368.
[6] [6] J W Goodman. Some effects of target-induced scintillation on optical radar performance[C]. IEEE,1965,53(11):1688-1700.
[7] [7] Mandel L,Sudarshanand E C G,Wolf E. Theory of photoelectric detection of light fluctuations[J]. Proceedings of the Physical Society,1964,84(3):435-444.
[8] [8] Mandel L. Fluctuations of photon beams:the distribution of the photoelectrons[J]. Proceedings of the Physical Society,1959,74(3):23 3-243.
[9] [9] Goodman J W. Speckle phenomena in optics:Theory and applications[M]. Greenwood Village:Roberts Company,CO USA,2007.
[10] [10] Müller JW. Dead-time problems[J]. Nuclear Instruments & Methods,1973,112(1-2):47-57.
[12] [12] Chen S,Xue C,Zhang T,et al. Analysis of the optimal wavelength for oceanographic lidar at the global scale based on the inherent optical properties of water[J]. Remote Sensing,2019,11(22):2705. DOI:10.3390/rs11222705.
Get Citation
Copy Citation Text
GUO Qi, XIANG Yu-yan, ZHANG Zhi-biao, LI Song. Design of Optical System for Multi-Channel Photon Counting Laser Radar for Lake Monitoring[J]. OPTICS & OPTOELECTRONIC TECHNOLOGY, 2024, 22(3): 8
Received: Dec. 29, 2023
Accepted: --
Published Online: Jun. 27, 2024
The Author Email:
CSTR:32186.14.