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High-Efficiency Device Positioning and Location-Aware Communications in Dense 5G Networks

机译:密集5G网络中的高效设备定位和位置感知通信

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摘要

In this article, the prospects and enabling technologies for high-efficiency device positioning and location-aware communications in emerging 5G networks are reviewed. We will first describe some key technical enablers and demonstrate by means of realistic ray-tracing and map based evaluations that positioning accuracies below one meter can be achieved by properly fusing direction and delay related measurements on the network side, even when tracking moving devices. We will then discuss the possibilities and opportunities that such high-efficiency positioning capabilities can offer, not only for location-based services in general, but also for the radio access network itself. In particular, we will demonstrate that geometric location-based beamforming schemes become technically feasible, which can offer substantially reduced reference symbol overhead compared to classic full channel state information (CSI)-based beamforming. At the same time, substantial power savings can be realized in future wideband 5G networks where acquiring full CSI calls for wideband reference signals while location estimation and tracking can, in turn, be accomplished with narrowband pilots.
机译:在本文中,回顾了新兴5G网络中高效设备定位和位置感知通信的前景和支持技术。我们将首先描述一些关键的技术推动力,并通过实际的光线跟踪和基于地图的评估来证明,即使在跟踪移动设备时,也可以通过适当地融合网络侧的方向和延迟相关测量来实现一米以下的定位精度。然后,我们将讨论这样的高效定位功能可以提供的可能性和机会,不仅对于一般的基于位置的服务,而且对于无线电接入网络本身。特别地,我们将证明基于几何位置的波束成形方案在技术上变得可行,与基于经典全信道状态信息(CSI)的波束成形相比,它可以提供大大减少的参考符号开销。同时,在未来的宽带5G网络中可以实现大量的功率节省,在宽带5G网络中,获取宽带参考信号的完整CSI呼叫,而位置估计和跟踪又可以通过窄带导频完成。

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