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V2V Channel Characterization and Modeling for Underground Parking Garages

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【作者】 Mi YangBo AiRuisi HeLiang ChenXue LiJianzhi LiZhangdui Zhong

【Author】 Mi Yang;Bo Ai;Ruisi He;Liang Chen;Xue Li;Jianzhi Li;Zhangdui Zhong;The State Key Lab of Rail Traffic Control and Safety,Beijing Jiaotong University;Huawei Technologies;

【通讯作者】 Bo Ai;Ruisi He;

【机构】 The State Key Lab of Rail Traffic Control and Safety,Beijing Jiaotong UniversityHuawei Technologies

【摘要】 As an important part of the intelligent transportation system(ITS), vehicleto-vehicle(V2 V) communication will improve the safety and efficiency of the transportation system by realizing the information transmission between vehicles.The underground parking garage is a typical scenario in V2 V communication, but as an indoor environment, it is different from the conventional outdoor road scenarios significantly.Therefore, the purpose of this paper is to analyze and model the V2 V channel characteristics of an underground garage. In this paper,a novel channel measurement carried out in the underground garage is first introduced.Considering that there are a lot of obstacles in an underground garage, the non-line-of-sight(NLoS) condition is taken into account during the measurement. Then, channel characteristic parameters, including large-scale fading, delay spread, and K-factor, are analyzed based on the measured data. In addition, we also carry out channel angle of arrival analysis, show the distribution of azimuth of arrival(AOA)and elevation of arrival(EOA) of multipath components(MPC), and conduct a statistical analysis of the angular spread. In the process of analysis and modeling, we focus on the differences between line-of-sight(LoS) andNLoS conditions. The analysis and conclusions presented in this paper will enrich the understanding of V2 V channel and benefit the design of V2 V communications.

【Abstract】 As an important part of the intelligent transportation system(ITS), vehicleto-vehicle(V2 V) communication will improve the safety and efficiency of the transportation system by realizing the information transmission between vehicles.The underground parking garage is a typical scenario in V2 V communication, but as an indoor environment, it is different from the conventional outdoor road scenarios significantly.Therefore, the purpose of this paper is to analyze and model the V2 V channel characteristics of an underground garage. In this paper,a novel channel measurement carried out in the underground garage is first introduced.Considering that there are a lot of obstacles in an underground garage, the non-line-of-sight(NLoS) condition is taken into account during the measurement. Then, channel characteristic parameters, including large-scale fading, delay spread, and K-factor, are analyzed based on the measured data. In addition, we also carry out channel angle of arrival analysis, show the distribution of azimuth of arrival(AOA)and elevation of arrival(EOA) of multipath components(MPC), and conduct a statistical analysis of the angular spread. In the process of analysis and modeling, we focus on the differences between line-of-sight(LoS) andNLoS conditions. The analysis and conclusions presented in this paper will enrich the understanding of V2 V channel and benefit the design of V2 V communications.

【基金】 supported in part by the National key research and development program under Grant 2016YFE0200900 and 2018YFF0212103;in part by the National Natural Science Foundation of China under Grant U1834210, 61725101, 61771037, and 6181101396;in part by Beijing Natural Science Foundation under Grant 4182047 and L172020;in part by the Major projects of Beijing Municipal Science and Technology Commission under Grant Z181100003218010;in part by the State Key Lab of Rail Traffic Control and Safety under Grant 2017JBM332, RCS2018ZZ007 and RCS2018ZT014;in part by the Fundamental research funds for the central universities under Grant 2019YJS229;in part by Teaching reform project under Grant 134496522 and 134601522;in part by the Huawei Corporation
  • 【文献出处】 中国通信 ,China Communications , 编辑部邮箱 ,2019年09期
  • 【分类号】U495
  • 【被引频次】5
  • 【下载频次】33
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