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移动场景下无线紫外光通信单次散射路径损耗分析 被引量:16

Analysis of Single-Scatter Path Loss in Wireless Ultraviolet Communication in Mobile Scene
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摘要 路径损耗是评估系统传输性能的重要参数,基于非直视非共面紫外光单次散射传输模型,采用遍历微元法对移动场景下无线紫外光通信单次散射路径损耗进行仿真,分析收发端几何参数以及收发节点相对位置变化对系统路径损耗的影响。结果表明:路径损耗在除180°方向外的其余方向上随着接收端移动距离的增大而增大;随着收发仰角增大,路径损耗增大,发射端仰角对路径损耗的影响更为显著;当视场角较大时,发散角变化对路径损耗的影响不大,而视场角的变化在非共面情况且移动距离较大时对路径损耗的影响较为明显,其余情况下则影响不大。 Path loss is an important parameter to evaluate the transmission performance of the system.Based on the non-line-of-sight non-coplanar ultraviolet single-scatter transmission model,the traversing tiny unit method(TTUM)is used to simulate the single-scatter path loss of wireless ultraviolet communication in mobile scenes,and the influence of the geometric parameters of the transceiver and the relative position change of the transceiver node on the path loss of the system is analyzed.The results show that path loss increases with the increase of the moving distance of the receiver in the other directions except 180°;with the increase of transceiver elevation angle,path loss increases,and the effect of transmitter elevation angle on path loss is more significant;when the field of view angle is large,the change of beam divergence angle has little effect on path loss,and change of field of view angle has a more obvious effect on path loss in non-coplanar case and large moving distance,while it has little effect in other cases.
作者 宋鹏 刘春 朱磊 张利剑 张晓丹 Song Peng;Liu Chun;Zhu Lei;Zhang Lijian;Zhang Xiaodan(School of Electronics and Information,Xi'an Polytechnic University,Xi'an,Shaanxi 710048,China)
出处 《光学学报》 EI CAS CSCD 北大核心 2020年第4期22-31,共10页 Acta Optica Sinica
基金 国家自然科学基金(61971345) 陕西省重点研发计划(2019GY-113) 陕西省科技厅自然科学基础项目(2018JQ4016) 西安市科技局科技指导项目(201805030YD8CG14(9)) 西安市科技局高校人才服务企业项目(GXYD7.15)。
关键词 光通信 紫外光 单次散射 移动场景 遍历微元法 路径损耗 optical communications ultraviolet single-scatter moving scene traversing tiny unit method path loss
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