毫米波无线系统定位方法的评价

Hazem El-Sayed, G. Athanasiou, C. Fischione
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引用次数: 46

摘要

毫米波通信被认为是实现多千兆无线接入和带宽要求高的应用的关键技术之一。越来越多的此类应用,如智能环境、资产跟踪、视频监控和专门的基于位置的服务,都需要与无线设备的位置相关的知识。由于毫米波传输的特殊特性,如高路径损耗衰减、氧吸收和天线方向性,实现精确定位具有挑战性。本文在实际条件下比较了各种定位方法在毫米波介质上的性能。基于毫米波信号的接收信号强度、到达时间和到达角度的突出定位方法,通过一组广泛的蒙特卡罗模拟进行了数值评估。提出基于到达角的定位是毫米波传输最有前途的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of localization methods in millimeter-wave wireless systems
Millimeter-wave communications are considered as one of the key technologies for enabling multi-gigabit wireless access and bandwidth demanding applications. An increasing number of these applications, such as smart environments, asset tracking, video surveillance, and specialized location based services, require knowledge related to the location of the wireless devices. Due to the special characteristics of millimeter-wave transmissions, such as high path loss attenuation, oxygen absorption, and antenna directivity, it is challenging to achieve accurate localization. In this overview paper, the performance of localization methods over the millimeter-wave medium is compared under realistic conditions. The prominent localization approaches based on received signal strength, time of arrival, and angle of arrival of millimeter-wave signals, are numerically evaluated by an extensive set of Monte Carlo simulations. It is suggested that localization based on angle of arrival is the most promising for millimeter-wave transmissions.
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