期刊文献+

降雨量对激光传输距离的影响分析 被引量:5

Analysis on TheImpact of Rainfall on Laser Transmission Distance
原文传递
导出
摘要 激光在近地大气降雨环境中传输时,易被雨滴散射和吸收,研究不同降雨条件下激光透过特性,为激光探测在目标探测系统中克服降雨因素的影响提供了一定依据。在Mie散射光学理论基础上,以韦布分布为雨滴尺寸分布模型,计算激光波束在雨中的传输衰减特性在降雨量不同时随距离的变化关系,分析在不同传输距离上5种典型降雨量对激光在水平传输路径上的衰减影响,并利用Modtran软件计算结果验证该计算结果的正确性。研究表明,激光透过率随着降雨量以及传输距离的增加而下降,且降雨量越大,在一定传输距离上下降速度越快。这些结论为目标探测系统在不同降雨环境中发射系统功率与接收系统精度的选择提供了一定的理论依据。 Laser is easily scattered and absorbed by raindrops when transmitting in the near-Earth rainy environment,so the analysis on laser transmission characteristics under different rainfall provides a certain basis for laser detection to overcome the influence of rainfall factors in target detection system.Based on Mie scattering and geometrical optics theory,Webb distribution as the raindrop size distribution bmodel,the change of laser attenuation with different transmission distance at different rainfalls was calculated.The model is simulated by Modtran to verify the correctness.Studies have shown that with the increase of rainfall intensity and transmission distance,the laser transmittance decreases,and the greater the intensity of rainfall fell,the laser transmittance decline faster in a certain transmission distance.These conclusions provide a theoretical basis for the selection of transmitting system power and receiving system accuracy for target detection system in different rainfall environments.
出处 《应用激光》 CSCD 北大核心 2015年第1期99-103,共5页 Applied Laser
关键词 激光传输 雨滴尺寸 MIE散射 光强衰减 MODTRAN laser transmission raindrop size Mie scattering laser attenuation Modtran
  • 相关文献

参考文献15

  • 1魏合理,刘庆红,宋正方,胡明,韩守春.红外辐射在雨中的衰减[J].红外与毫米波学报,1997,16(6):418-424. 被引量:22
  • 2王丽黎,柯熙政,席晓莉.激光在雨中传输的分析与计算[J].光散射学报,2005,17(2):148-153. 被引量:11
  • 3柯熙政,杨利红,马冬冬.激光信号在雨中的传输衰减[J].红外与激光工程,2008,37(6):1021-1024. 被引量:18
  • 4MARSHALL J S,PALMER W M. The distribution of raindrops with size[J]. J Meteoro,1948(5):165-166.
  • 5郑娇恒,陈宝君.雨滴谱分布函数的选择:M-P和Gamma分布的对比研究[J].气象科学,2007,27(1):17-25. 被引量:81
  • 6ASSULINE S, MUALEM Y. The similarity of regional rainfall: adimensionless model of drop sizedistribution [J]. Trans ASAE,1989,32(4) :1216-1222.
  • 7GUNN R, KINZER G D. Terminal velocity of water droplets in stagnant air[J]. J Meteoro, 1949, 6 (4): 243 -248.
  • 8LAWS J O, PARSONS D A. The relationship of rain- drop size to intensity[J]. Trans Am Geophys Union, 1943(24) :,152-460.
  • 9JOSS J, GORI E G. Shape of raindrop size distribution [J].J Appl. Meteor, 1978(17):1054-1061.
  • 10BRUSSARD G,WATSON P A. Atmospheric modeling and millimeter wave propagation [ M]. London: Chaw man .Hall, 1995:285-296.

二级参考文献41

共引文献127

同被引文献53

引证文献5

二级引证文献6

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部