Synchronous channel sounder using horn antenna and indoor measurements on 28 GHz

Sooyoung Hur, Yeon-Jea Cho, JungAun Lee, Noh-Gyoung Kang, Jeongho Park, H. Benn
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引用次数: 115

Abstract

The millimeter wave band will be a key component in the next generation wireless communication system (5G), and a proper channel model is needed for developing the future 5G cellular technologies. This paper introduces a 28 GHz channel sounder based on automatically rotating horn antennas with time synchronization ability between the transmitter (TX) and the receiver (RX). We have developed a sounding method for synchronized measurement using the proposed channel sounder system which records time-stamping to measure the relative propagation time from the transmitter to receiver. The proposed approach allows us to generate an omni-like channel measurements by synthesizing all directional measurements, which have been verified by comparison with the measurements of omni-directional antennas. Subsequently, the omni-directional propagation measurement results are provided in an in-building environment similar to a small shopping mall. From the measurements, the clustering analysis has been done including its power distribution. This paper provides the first channel sounder and initial results to obtain the synthesized omni-directional results in millimeter wave 28 GHz band.
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同步信道测深仪采用喇叭天线,室内测量频率为28ghz
毫米波频段将是下一代无线通信系统(5G)的关键组成部分,为了开发未来的5G蜂窝技术,需要合适的信道模型。介绍了一种基于自动旋转喇叭天线的28ghz信道测深仪,该测深仪在发射端和接收端具有时间同步能力。我们开发了一种同步测量的测深方法,使用所提出的信道测深系统记录时间戳来测量从发射机到接收机的相对传播时间。所提出的方法使我们能够通过综合所有方向测量来生成全向通道测量,并通过与全向天线的测量进行比较来验证。随后,在类似于小型购物中心的建筑内环境中提供了全向传播测量结果。根据测量结果,进行了聚类分析,包括其功率分布。本文给出了毫米波28ghz波段的首个信道测深仪和初步结果,得到了合成的全向结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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