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Sleep Modes for Enhanced Battery Life of 5G Mobile Terminals

机译:睡眠模式可延长5G移动终端的电池寿命

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摘要

In addition to higher data rates and lower latency the 5G Radio Access Technology concepts are targeting to provide better battery life for mobile broadband and Machine Type Communication users. In this overview paper we analyze how microsleep, Discontinuous Reception and Transmission, and a wake-up receiver concept can be combined to enhance the battery life of 5G mobile terminals. Due to the short and pipelined 5G frame structure microsleep provides 20 % energy savings as compared to LTE. The Discontinuous Reception and Transmission modes also benefit from the new frame structure leading to faster connection setup and up to 80 % lower energy consumption depending on the traffic type. Finally we estimate that the wake-up receiver concept, when adapted to scheduled and cellular communication, can provide 90 % lower energy consumption and ensure a predictable and consistent latency.
机译:除了更高的数据速率和更低的延迟外,5G无线电接入技术概念还旨在为移动宽带和机器类型通信用户提供更长的电池寿命。在本概述文件中,我们分析了如何将微睡眠,不连续接收和传输以及唤醒接收器概念结合起来以延长5G移动终端的电池寿命。由于短而流水线化的5G帧结构,与LTE相比,微睡眠可节省20%的能源。不连续的接收和传输模式还得益于新的帧结构,可加快连接建立速度,并根据交通类型将能耗降低多达80%。最终,我们估计,唤醒接收机概念在用于计划的和蜂窝通信时,可以降低90%的能耗,并确保可预测的一致的等待时间。

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