Congestion-aware MTC device triggering

A. Ksentini, T. Taleb, Xiaohu Ge, Honglin Hu
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引用次数: 8

Abstract

This paper describes a device triggering optimization technique for controlling system overload when deploying massive Machine Type Communication (MTC) devices in 3GPP-based cellular networks. Triggering a large number of MTC devices can dramatically overload the underlying transport network system and incur congestion in both the Radio Access Network (RAN) and the Evolved Packet Core (EPC). The proposed solution aims at controlling the rate of device trigger requests that MTC servers can generate in order to reduce the system overload. For this purpose, we propose that the Mobility Management Entity (MME), or an alike core network node, computes the device trigger rate that alleviates congestion, and communicates this value to the MTC-Interworking Function (MTC-IWF) element that enforces MTC traffic control, via admission control or data aggregation, on the device trigger request rate received from the different MTC servers. The proposed solution is evaluated through computer simulations and encouraging results are obtained.
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拥塞感知MTC设备触发
本文介绍了一种用于在基于3gpp的蜂窝网络中部署大规模机器类型通信(MTC)设备时控制系统过载的设备触发优化技术。触发大量MTC设备会使底层传输网络系统严重超载,并导致无线接入网(RAN)和演进分组核心(EPC)的拥塞。提出的解决方案旨在控制MTC服务器可以生成的设备触发请求的速率,以减少系统过载。为此,我们建议移动管理实体(MME)或类似的核心网络节点计算缓解拥塞的设备触发率,并将该值传达给MTC-互联功能(MTC- iwf)元素,该元素通过接收控制或数据聚合,对从不同MTC服务器接收的设备触发请求率进行MTC流量控制。通过计算机仿真对该方案进行了评价,得到了令人鼓舞的结果。
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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