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A distributed algorithm to schedule TSCH links under the SINR model

机译:分布式算法在SINR模型下安排TSCH链路

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Industrial environments are typically characterised by high levels of interference. Therefore, standards for industrial wireless sensor networks (WirelessHART, ISA 100.11a, and IEEE 802.15.4e) have defined a time division and multichannel-based mode of operation, in which pairs of time slots and channels are assigned to links representing communication between nodes. In IEEE 802.15.4e this mode of operation is called Timed Slotted Channel Hopping. In this paper we describe a distributed algorithm to define such an assignment for a given network. The algorithm is efficient, scalable and was developed for the Signal-to-Interference-plus-Noise-Ratio model, currently considered the most appropriate to analyse algorithms for wireless networks when interference is taken into consideration. In particular, the algorithm provides deterministic communication in the network. Previous approaches to this problem are mainly centralised, based on a simple (or none) interference model, do not provide deterministic communication or do not consider multiple physical channels. In this paper we describe the algorithm and present results of simulation, where we evaluated the number of rounds needed for computing the schedules and the size of the produced schedules. The described algorithm applies also to the Internet of Things, characterised by high scale and presence of interference.
机译:工业环境通常具有高水平的干扰。因此,工业无线传感器网络(WirelessHart,ISA 100.11a和IEEE 802.15.4e)的标准已经定义了一种时分和基于多通道的操作模式,其中分配了代表节点之间通信的链接的链路。在IEEE 802.15.4e中,这种操作模式称为定时开槽通道跳跃。在本文中,我们描述了一种分布式算法来定义给定网络的这样的分配。该算法是有效的,可伸缩的,并且是为信号到干扰加噪声 - 比率模型开发的,当考虑干扰时,目前被认为是最合适的用于分析无线网络的算法。特别地,该算法提供网络中的确定性通信。先前对此问题的方法主要集中,基于简单(或无)干扰模型,不提供确定性通信或不考虑多个物理信道。在本文中,我们描述了算法和仿真结果,在那里我们评估了计算时间表和所产生的时间表的大小所需的轮数的数量。所描述的算法也适用于物联网,其特征在于高规模和干扰的存在。

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