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Handover Performance and Power Consumption Analysis of LTE Mobile Relays

机译:LTE移动继电器的切换性能和功耗分析

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Mobile relay node (MRN) is one of the cheaper options for reliable communication when users are moving by public transport (i.e. bus, tram, train, subway, etc.), especially in urban areas. Critically, MRNs need to maintain a backhaul connection with the fixed infrastructure via a donor eNB, (DeNB). If the MRN fails to successfully handover (HO) from one DeNB to another, it will create a single point of failure, i.e. the connection of all UEs connected to MRN will be dropped. In this paper, we address the HO performance of a MRN including a power consumption analysis thereof. We investigate the potential gains in terms of HO rate, HO failure ratio (HOFR), ping-pong (PP) rate and power consumption (both at UE and eNB) when a MRN is deployed on a bus traveling along the cell edges of surrounding macro BSs. We also look over the MRN HO failure cases to identify the causes of HO failures that are more critical for the UEs onboard. Numerical results indicate that deploying a MRN on the roof-top of a bus improves the HO rates 15%, HOFR 8%, PP rate 17%, UE power consumption 21%, and eNB power consumption 14% on average for all simulated cases. We have also established that UL transmission errors are the most dominant causes of turning MRN to a single point of failure during a HO.
机译:移动中继节点(MRN)是当用户通过公共交通工具移动时可靠通信的更便宜的选项之一(即巴士,电车,火车,地铁等),特别是在城市地区。批判性地,MRNS需要通过捐赠者eNB保持与固定基础设施的回程连接(DENB)。如果MRN无法从一个DENB成功切换(HO),则它将创建单个故障点,即,连接到MRN的所有UE的连接将被删除。在本文中,我们解决了MRN的HO性能,包括其功耗分析。当MRN沿着周围的电池边缘行驶时,我们调查HO速率,HO故障比(HOFR),Ping-PONG(PP),Ping-PONG(PP)速率和功耗(在UE和eNB)方面的潜在增益宏BSS。我们还查看MRN HO故障情况,以确定HO故障的原因对UE在板上更为关键。数值结果表明,在总线上的屋顶上部署MRN,提高了HO率为15%,HOFR 8%,PP率17%,UE功耗21%,平均所有模拟案例平均为14%。我们还建立了UL传输误差是在HO期间将MRN转向单点故障的最大原因。

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