Laser Technology, Volume. 49, Issue 1, 8(2025)
Dual polarization detection technology based on coherent LiDAR
[1] [1] YUAN J L, XIA H Y, WEI T W, et al. Identifying cloud, precipitation, windshear, and turbulence by deep analysis of the power spectrum of coherent Doppler wind lidar[J]. Optics Express, 2020, 28(25): 37406.
[2] [2] WANG Y Y, DONG Z, DING J J, et al. Photonics-assisted joint high-speed communication and high-resolution radar detection system[J]. Optics Letters, 2021, 46(24): 6103-6106.
[3] [3] SHARAMA A, CHAUDHARY S, MALHOTRA J, et al. Measurement of target range and doppler shift by incorporating PDM-enabled FMCW-based photonic radar[J]. Optik—International Journal for Light and Electron Optics, 2022, 262(2022): 169191.
[4] [4] WEI T W, XIA H Y, YUE B, et al. Remote sensing of raindrop size distribution using the coherent Doppler lidar[J]. Optics Express, 2021, 29(11): 17246-17257.
[6] [6] SHANGGUAN M J, QIU J W, YUAN J L, et al. Doppler wind lidar form UV to NIR: Areview with case study examples[J]. Frontiers in Remote Sensing, 2022, 2: 787111.
[7] [7] RUI X B, GUO P, CHEN H, et al. Portable coherent Doppler light detection anad ranging for boundary-layer wind sensing[J]. Optical Engineering, 2019, 58(3): 034105.
[10] [10] WANG K X, ZHANG X, LIN Zh F, et al. Performance verification of mobile Doppler wind lidar[J]. Proceedings of the SPIE, 2021, 12280: 1228003.
[13] [13] ZHAO K, HUANG H, WANG M J, et al. Recent progress in dual-polarization radar research and applications in China[J]. Advances in Atmospheric Sciences, 2019, 36(9): 14.
[14] [14] XU Z Y, CHEN K, ZHANG H X, et al. Multifunction lidar system based on polarization-division multiplexing[J]. Journal of Lightwave Technology, 2019, 37(9): 2000-2007.
[15] [15] XU Z Y, ZHANG H X, CHEN K, et al. Compact all-fiber polarization coherent lidarbased on a polarization modulator[J]. IEEE Transactions on Instrumentation and Measurement, 2020, 69(5): 2193-2198.
[16] [16] ABARI C F, CHU X Z, HARDESTY R M, et al. A reconfigurable all-fiber polarization-diversity coherent Doppler lidar: Principles and numerical simulations[J]. Applied Optics, 2015, 54(30): 8999-9009.
[17] [17] WANG C, XIA H Y, SHANGGUAN J M, et al. 1.5 m polarization coherent lidar incorporating time-division multiplexing[J]. Optics Express, 2017, 25(17): 20663-20674.
[18] [18] ZHOU Y L, LI J, WANG K X, et al. Coherent Doppler wind lidardenoising adopting variational mode decomposition based on honey badger algorithm[J]. Optics Express, 2022, 30(14): 25774-25787.
[19] [19] DONG X, HU Y H, ZHAO N X. Characteristics of heterodyne lidarechos in different polydisperse aerosol environments[J]. Optik, 2018, 174: 655-664.
[20] [20] ROTH J M, BKAND R E, LIBBY S I. Large-aperture wide field of view optical circulators[J]. IEEE Photonics Technology Letters, 2005, 17(10): 2128-2130.
[21] [21] HU Y H, DONG X, GUO L R. Coherent detection of backscattered polarized laser with polarization diversity reception[C]//2016 Fourth International Conference on Ubiquitous Positioning, Indoor Navigation and Location Based Services (UPINLBS). Shanghai, China: IEEE, 2016: 271-277.
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LUO Xiaopian, FENG Litian, YIN Wei, JIN Guohua, PENG Tao, DONG Jihui, ZHANG Yongke, ZHOU Dingfu. Dual polarization detection technology based on coherent LiDAR[J]. Laser Technology, 2025, 49(1): 8
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Received: Nov. 13, 2023
Accepted: Feb. 18, 2025
Published Online: Feb. 18, 2025
The Author Email: ZHOU Dingfu (df_xh_zhou@sina.com)