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Novel Wake-up Scheme for Energy-Efficient Low-Latency Mobile Devices in 5G Networks

机译:用于5G网络中节能低延迟移动设备的新型唤醒方案

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Improved mobile device battery lifetime and latency minimization are critical requirements for enhancing the mobile broadband services and user experience. Long-term evolution (LTE) networks have adopted discontinuous reception (DRX) as the baseline solution for prolonged battery lifetime. However, in every DRX cycle, the mobile device baseband processing unit monitors and decodes the control signaling, and thus, all instances without any actual data allocation leads to unnecessary energy consumption. This fact together with the long start-up and power-down times can prevent adopting frequent wake-up instants, which, in turn, leads to considerable latency. In this work, a novel wake-up scheme is described and studied, to tackle the trade-off between latency and battery lifetime in future 5G networks, seeking thus to facilitate an always-available experience, rather than always-on. Analytical and simulation-based results show that the proposed scheme is a promising approach to control the user plane latency and energy consumption, when the device is operating in the power saving mode. The aim of this article is to describe the overall wake-up system operating principle and the associated signaling methods, receiver processing solutions and essential implementation aspects. Additionally, the advantages compared to DRX-based systems are shown and demonstrated, through the analysis of the system energy-efficiency and latency characteristics, with special emphasis on future 5G-grade mobile devices.
机译:改进的移动设备电池寿命和延迟最小化是加强移动宽带服务和用户体验的关键要求。长期演进(LTE)网络采用了不连续的接收(DRX)作为长时间电池寿命的基线解决方案。然而,在每个DRX周期中,移动设备基带处理单元监视并解码控制信令,因此,所有没有任何实际数据分配的情况导致不必要的能量消耗。这一事实与长期启动和断电时间一起可以防止采用频繁的唤醒瞬间,从而导致相当大的延迟。在这项工作中,描述并研究了一种新的唤醒方案,以解决未来的5G网络中的延迟和电池寿命之间的权衡,从而促进始终可用的体验,而不是总是开启。基于分析和仿真结果表明,当设备在省电模式下操作时,该方案是控制用户平面潜伏期和能量消耗的有希望的方法。本文的目的是描述整体唤醒系统操作原理和相关的信令方法,接收器处理解决方案和基本实现方面。另外,通过分析系统能效和延迟特性,示出和演示了与基于DRX的系统相比的优点,特别强调了未来的5G级移动设备。

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