Infrared and Laser Engineering, Volume. 51, Issue 11, 20220090(2022)
Gaussian decomposition ranging method for laser fuze under cloud and fog interference conditions
[1] W Zhang, Y L Li, Z H Huang, et al. Research on the characteristics of fog backscattering signals for frequency modulated continuous wave laser fuze. Optik, 127, 9046-9055(2016).
[2] W Zhang, Y L Li, Z H Huang, et al. Fog backscattering interference suppression algorithm for FMCW laser fuze based on normalized frequency spectrum threshold. Optik, 131, 188-193(2017).
[3] D Kim, C H Du, Y Kim, et al. Optical depth and multiple scattering depolarization in liquid clouds. Opt Rev, 17, 507-512(2010).
[4] R C Qian, Y N Gui, W B Dong, et al. Variable coefficient correlation detection of laser fuze echo pulses. Journal of Detection & Control, 36, 1-5(2014).
[5] H G Ren, H S Yu, L J Huo, et al. Anti-interference of dual-wavelength laser fuze. Journal of Detection & Control, 37, 1-4(2015).
[6] F J Wang, H M Chen. Simulation of characteristics of cloud and fog echo for pulse laser fuze. Optics and Precision Engineering, 23, 12-18(2015).
[7] F J Wang, H M Chen, C Ma, et al. Construction of back-scattering echo caused by cloud in laser fuze. Optik, 171, 153-160(2018).
[8] J Li, H Mei, C L He, et al. Laser fuze anti-interference method based on pulse width modulation technique. Infrared and Laser Engineering, 49, 0403007(2020).
[9] [9] Wang R X, Liu F, Jia X D, et al. Laser detection technology based on wavefront measurement [C]Proceedings of SPIE, 2020, 11567: 811816.
[10] X B Xu, H Zhang, X J Zhang, et al. Effect of plane target characteristics on ranging distribution for pulse laser detection. Acta Physica Sinica, 65, 210601(2016).
[11] H S Li, X Q Zhang. Laser echo characteristics and detection probability calculation on the space projectile proximity fuze. Optik, 183, 713-722(2019).
[12] S S Chen, H Zhang, X B Xu. Echo characteristic of planar target in pulsed laser fuze detection. Acta Armamentarii, 39, 1095-1102(2018).
[13] M Liu, G Y Zhang, Z Y An, et al. Detection method for ranging performance of IR laser rangefinder based on aerosol echo simulation. Optik, 127, 25-29(2016).
[14] C Romain, J B Matthew. Aerosol light extinction and back-scattering: A review with a lidar perspective. Journal of Quantitative Spectroscopy and Radiative Transfer, 262, 107492(2021).
[15] A Haim, B Henrik, B Preben. Correction to the Beer-Lambert-Bouguer law for optical absorption. Appl Opt, 47, 5354-5357(2008).
[16] J F Xie, C C Yang, Y K Mei, et al. Full waveform decom-position of spaceborne laser based on genetic algorithm. Infrared and Laser Engineering, 49, 20200245(2020).
[17] Q Q Wu, S Z Qiang, Y Q Wang, et al. Lidar full-waveform decomposition based on empirical mode decomposition and local-Levenberg-Marquard fitting. Appl Opt, 58, 7943-7949(2019).
[18] S L Song, B H Wang, W Gong, et al. A new waveform decomposition method for multispectral LiDAR. ISPRS Journal of Photogrammetry and Remote Sensing, 149, 40-49(2019).
[19] Q Y Song, X C Ma. High-resolution time delay estimation algorithms through cross-correlation post-processing. IEEE Signal Processing Letters, 28, 479-483(2021).
[20] [20] Kim I I, Mcarthur B, Kevaar E J. Comparison of laser beam propagation at 785 nm 1550 nm in fog haze f optical wireless communications [C]Proceedings of SPIE, 2001, 4214: 2637.
[21] Naboulsi M C Al, H Sizun, Fornel F de. Fog attenuation prediction for optical and infrared waves. Optical Engineering, 43, 319-329(2004).
Get Citation
Copy Citation Text
Xue Liu, Hong Gu, Haohui Chen, Yong Zhang, Zhen Yang, Jianlong Zhang. Gaussian decomposition ranging method for laser fuze under cloud and fog interference conditions[J]. Infrared and Laser Engineering, 2022, 51(11): 20220090
Category: Lasers & Laser optics
Received: Feb. 7, 2022
Accepted: --
Published Online: Feb. 9, 2023
The Author Email: