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Data Aggregation and Packet Bundling of Uplink Small Packets for Monitoring Applications in LTE

机译:上行小包的数据聚合和包绑定,用于监控LTE中的应用

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摘要

In cellular massive machine-type communications, a device can transmit directly to the BS or through an aggregator (intermediate node). While direct device-BS communication has recently been the focus of 5G/3GPP research and standardization efforts, the use of aggregators remains a less explored topic. In this article we analyze the deployment scenarios in which aggregators can perform cellular access on behalf of multiple MTC devices. We study the effect of packet bundling at the aggregator, which alleviates overhead and resource waste when sending small packets. The aggregators give rise to a trade-off between access congestion and resource starvation, and we show that packet bundling can minimize resource starvation, especially for smaller numbers of aggregators. Under the limitations of the considered model, we investigate the optimal settings of the network parameters in terms of number of aggregators and packet bundle size. Our results show that, in general, data aggregation can benefit the uplink massive MTC in LTE by reducing the signaling overhead.
机译:在蜂窝大规模机器类型的通信中,设备可以直接发送到BS或通过聚合器(中间节点)进行传输。尽管直接的设备-BS通信最近已成为5G / 3GPP研究和标准化工作的重点,但聚合器的使用仍然是一个探讨较少的话题。在本文中,我们分析了部署场景,其中聚合器可以代表多个MTC设备执行蜂窝访问。我们在聚合器上研究数据包捆绑的效果,该效果可减轻发送小数据包时的开销和资源浪费。聚合器在访问拥塞和资源匮乏之间产生了折衷,我们证明了数据包捆绑可以最大程度地减少资源匮乏,尤其是对于数量较少的聚合器而言。在考虑的模型的限制下,我们根据聚合器的数量和数据包束的大小来研究网络参数的最佳设置。我们的结果表明,总体而言,数据聚合可通过减少信令开销来使LTE中的上行链路大规模MTC受益。

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