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Analysis of LTE Relay Interface for Self-Backhauling in LTE Mesh Networks

机译:LTE Mesh网络中用于自回传的LTE中继接口分析

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LTE is deployed in most countries and continuously evolving to match new user requirements. While it is expected to support 5G deployments for outdoor and long range communications, it will also be used for Public Safety services in major countries. Among those, new scenarios call for wider networks on the move relying on self-backhauling. In this article we argue that the LTE relay interface (Un) is an efficient candidate to enable multi-hop LTE mesh networks. We first study the Un interface and highlight its main properties. We then analyze and compare out-band LTE-Uu, in-band LTE-Uu with full duplex radios and in-band Un interface to mesh LTE base stations. We perform link-level emulations to assess the performance of the Un interface subject to different conditions. Finally, we compare the achievable throughput of self-backhauled LTE mesh network using either Un or LTE-Uu through a system-level simulation.
机译:LTE已在大多数国家/地区部署,并且不断发展以适应新的用户需求。虽然预计它将支持用于室外和远程通信的5G部署,但它还将在主要国家/地区用于公共安全服务。其中,新方案要求依靠自我回传的移动网络不断扩大。在本文中,我们认为LTE中继接口(Un)是启用多跳LTE网格网络的有效候选者。我们首先研究Un接口并突出其主要属性。然后,我们分析和比较带外LTE-Uu,带全双工无线电的带内LTE-Uu和与网状LTE基站的带内Un接口。我们执行链接级别的仿真,以评估Un接口在不同条件下的性能。最后,我们通过系统级仿真比较了使用Un或LTE-Uu的自回程LTE网格网络的可实现吞吐量。

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