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65.5 GHz毫米波信道测量与分析
引用本文:侯春枝,刘永胜,吴振森,李清亮,卢昌胜,林乐科,陈安涛,张玉强.65.5 GHz毫米波信道测量与分析[J].电波科学学报,2021,36(4):630-636.
作者姓名:侯春枝  刘永胜  吴振森  李清亮  卢昌胜  林乐科  陈安涛  张玉强
作者单位:1.西安电子科技大学物理与光电工程学院,西安 710071
摘    要:毫米波技术和大规模多输入多输出天线技术是5G移动通信系统的关键技术.为了研究60 GHz毫米波频段宽带信道特性,在会议室进行了65.5 GHz频段的信道测量活动.首先基于方向性路损模型,研究路径损耗指数和阴影衰落特性;然后基于空间交替广义期望最大化(space-alternating generalized expec...

关 键 词:毫米波  信道建模  SAGE算法  方向性路损模型  多径分量距离  信道参数
收稿时间:2020-09-23

Millimeter wave channel measurement and analysis in 65.5 GHz
HOU Chunzhi,LIU Yongsheng,WU Zhensen,LI Qingliang,LU Changsheng,LIN Leke,CHEN Antao,ZHANG Yuqiang.Millimeter wave channel measurement and analysis in 65.5 GHz[J].Chinese Journal of Radio Science,2021,36(4):630-636.
Authors:HOU Chunzhi  LIU Yongsheng  WU Zhensen  LI Qingliang  LU Changsheng  LIN Leke  CHEN Antao  ZHANG Yuqiang
Institution:1.School of Physics and Optoelectronic Engineering, Xidian University, Xi’an 710071, China2.National Key Laboratory of Electromagnetic Environment, China Research Institute of Radiowave Propagation, Qingdao 266107, China3.China Electronics Technology Instruments Co., Ltd., Qingdao 266555, China
Abstract:Millimeter wave technology and massive multiple-input multiple-output antenna technology are the key technologies of the 5G mobile communication system. In order to study the broadband channel characteristics of the millimeter wave frequency band above 60 GHz, channel measurement activities in 65.5 GHz were carried out in a conference room. Based on the directional path loss model, this paper studies the path loss exponent and shadow fading characteristics firstly, and then based on the space-alternating generalized expectation-maximization (SAGE) parameterized analysis algorithm, the horizontal angle of arrival, delay and amplitude information are extracted, and finally based on the multipath component distance method, root mean square delay spread and root mean square angle spread characteristics are analyzed. The results show the directional path loss is similar to the free space path loss model in the methods of fixed intercept and floating intercept in the line-of-sight. The sparseness of the clusters in the environment is shown in 65.5 GHz. The time delay Expansion and angle expansion are similar to the results of the 3rd Generation Partership Project (3GPP). The channel parameters which are provided in this article have important reference significance for the channel modeling and simulation of 5G millimeter waves above 60 GHz.
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