增强型超宽带方法用于5G LOS充分定位和缓解

Akeem A. Adebomehin, S. Walker
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引用次数: 10

摘要

5G网络的前景是无缝连接全球设备,具有可容忍延迟的通信、毫秒级延迟和每秒千兆比特的数据速率,这表明需要具有新定位服务方法的高分辨率位置感知系统。传统的地理定位方法的特点是检测和缓解非近地光路径,其中非近地光和非近地光分量之间的区分是一个假设检验问题。这解释了大多数相关工作的重点是距离测量。然而,人们认为,超宽带(UWB)有望为5G环境中预期的精度关键情况提供更好的定位方法。本文概述了可能的5G无线架构,作为未来无线环境中实现超宽带的路线图。它还建议EULOSTECH;一种用于认知5G无线设置的增强UWB LOS充分性定位技术和缓解方法算法。仿真实验的结果令人印象深刻,本文给出了其中的重点。据信,所提出的解决方案具有在5G环境中实现强大且经济高效的本地化的潜力,并有望通过超宽带在5G无线环境中减少许可频谱的拥挤。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhanced Ultrawideband methods for 5G LOS sufficient positioning and mitigation
The 5G network prospect of seamlessly connected global devices with delay-tolerant communication, millisecond latency and gigabits per second data rate suggests the need for high resolution location-aware systems with new methods for positioning services. Traditional geo-positioning methods have been characterized by detection and mitigation of NLOS paths where discrimination between LOS and NLOS components are cast into a hypothesis-testing problem. This explains the focus of most related works on range measurements. It is however believed that Ultrawideband (UWB) promises better positioning methods for accuracy-critical situations expected in 5G setting. This paper outlines probable 5G wireless architecture as a road map to UWB in future wireless environments. It also proposes EULOSTECH; an algorithm for enhanced UWB LOS sufficiency positioning technique and mitigation method for cognitive 5G wireless setting. Results obtained from simulation experiments have been impressive and the highlights are presented in this paper. It is believed that the proposed solution has potential for robust and cost efficient localization in 5G setting as well as prospect to decongest licensed spectrums in 5G wireless environment with UWB.
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