Guard time optimisation and adaptation for energy efficient multi-hop TSCH networks

Georgios Z. Papadopoulos, A. Mavromatis, Xenofon Fafoutis, N. Montavont, R. Piechocki, T. Tryfonas, G. Oikonomou
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引用次数: 19

Abstract

In the IEEE 802.15.4-2015 standard, Time Slotted Channel Hopping (TSCH) aims to guarantee high-level network reliability by keeping nodes time-synchronised. In order to ensure successful communication between a sender and a receiver, the latter starts listening shortly before the expected time of a MAC layer frame's arrival. The offset between the time a node starts listening and the estimated time of frame arrival is called guard time and it aims to reduce the probability of missed frames due to clock drift. In this paper, we investigate the impact of the guard time on network performance. We identify that, when using the 6tisch minimal schedule, the most significant cause of energy consumption is idle listening during guard time. Therefore, we first perform mathematical modelling on a TSCH link to identify the guard time that maximises the energy-efficiency of the TSCH network in single hop topology. We then continue in multi-hop network, where we empirically adapt the guard time locally at each node depending its distance, in terms of hops, from the sink. Our performance evaluation results, conducted using the Contiki OS, demonstrate that the proposed decentralised guard time adaptation can reduce the energy consumption by up to 40%, without compromising network reliability.
节能多跳TSCH网络的保护时间优化与自适应
在IEEE 802.15.4-2015标准中,时隙信道跳频(TSCH)旨在通过保持节点时间同步来保证高水平的网络可靠性。为了确保发送方和接收方之间的通信成功,后者在MAC层帧到达的预期时间之前开始侦听。节点开始侦听的时间和帧到达的估计时间之间的偏移量称为保护时间,其目的是减少由于时钟漂移而丢失帧的概率。在本文中,我们研究了保护时间对网络性能的影响。我们发现,当使用6tisch最小调度时,能源消耗的最重要原因是守护时间的空闲侦听。因此,我们首先对TSCH链路进行数学建模,以确定在单跳拓扑中最大化TSCH网络能效的保护时间。然后,我们继续在多跳网络中,我们根据每个节点到接收器的跳数的距离,经验地在本地调整保护时间。我们使用Contiki OS进行的性能评估结果表明,所提出的分散保护时间适应可以在不影响网络可靠性的情况下减少高达40%的能耗。
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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