LTE网络上M2M通信的省电机制

S. C. Jha, A. Koç, M. Gupta, R. Vannithamby
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引用次数: 21

摘要

机器对机器(M2M)通信预计将成为LTE等蜂窝网络移动通信增长的主要推动力。由于LTE网络主要是为人对人(H2H)通信而设计和优化的,现有的协议和机制在支持M2M通信方面不是很有效。为了满足这些网络中M2M设备的业务需求和流量特征,需要进行一些修改。设备的功率效率是M2M通信的关键要求之一。我们专注于在4G网络上降低M2M设备功耗的解决方案。M2M流量的特点与H2H流量的特点在生成数据的大小和频率上有所不同。一种可能的机制是最大化M2M设备处于低功耗状态的时间。在本文中,我们评估了延长分页周期和减少RRC连接到空闲转换尾时间对节能的影响。我们的结果表明,对于不频繁的数据传输,扩展分页周期可以减少高达79.3%的功耗。然而,对于频繁的数据传输,减少连接到空闲转换尾时间更有效,可将功耗降低76.2%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Power Saving mechanisms for M2M communication over LTE networks
Machine to Machine (M2M) communication is expected to be a major driver of growth in mobile communications for cellular networks such as LTE. Since LTE networks are primarily designed and optimized for human to human (H2H) communications, existing protocols and mechanisms are not very efficient for supporting M2M communication. Several modifications are needed to address the service requirements and traffic characteristics of M2M devices in these networks. Device power efficiency is one of the crucial requirements for M2M communication. We focus on solutions to decrease power consumption of M2M devices over 4G networks. M2M traffic characteristics are different from those of H2H traffic in terms of the size and the frequency of the generated data. One possible mechanism is to maximize the time that the M2M device is in low power state. In this paper, we evaluate the impact of extending the Paging Cycle and reducing the RRC Connected-to-Idle transition tail time on power savings. Our results show that for infrequent data transmission extending Paging Cycle reduces power consumption up to 79.3%. However, for frequent data transmission reducing Connected-to-Idle transition tail time is more effective and reduces power consumption by up to 76.2%.
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