Performance Evaluation for Energy-Harvesting Machine-Type Communication in LTE-A System

Mei-Ju Shih, Yuan-Chi Pang, Guan-Yu Lin, Hung-Yu Wei, R. Vannithamby
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引用次数: 7

Abstract

To explore the energy efficient Machine-Type Communication (MTC) for 5G cellular systems, we developed a simulation platform to investigate the complete uplink procedures of energy-harvesting MTC devices in LTE-A (Long Term Evolution Advanced) system. Though the 3rd Generation Partnership (3GPP) has worked on LTE-A cellular standards in support of MTC transmission, the standards have not taken energy-harvesting MTC devices into their scope. Energy-harvesting technology can be the candidate to support the MTC features by allowing the devices to harvest ambient energy and support their own power usage without manual upgrade. The proposed Energy-Aware LTE-A scheme, serving as power control and admission control, prevents the devices from building the network connections greedily but ending up with energy shortage and packet loss. This scheme not only can reduce the contention level of control channels but also can decrease energy wastage on network entry procedures, thereby improving the overall energy efficiency.
LTE-A系统能量采集机型通信性能评价
为了探索5G蜂窝系统的节能机器类型通信(MTC),我们开发了一个仿真平台来研究LTE-A(长期演进高级)系统中能量收集MTC设备的完整上行过程。尽管第三代合作伙伴(3GPP)已经在制定支持MTC传输的LTE-A蜂窝标准,但这些标准尚未将能量收集MTC设备纳入其范围。能量收集技术可以是支持MTC功能的候选技术,它允许设备收集周围的能量并支持自己的电力使用,而无需手动升级。提出的能量感知LTE-A方案,作为功率控制和准入控制,防止设备贪婪地建立网络连接而导致能量不足和丢包。该方案不仅可以降低控制通道的争用程度,还可以减少入网过程中的能量浪费,从而提高整体的能源效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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