Fast join and synchronization schema in the IEEE 802.15.4e MAC

Elvis Vogli, Giuseppe Ribezzo, L. Grieco, G. Boggia
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引用次数: 48

Abstract

The Time Slotted Channel Hopping (TSCH) Medium Access Control (MAC) has been introduced in the recent IEEE 802.15.4e amendment to improve energy efficiency and reliability of short range wireless communications in industrial applications. However the joining phase can take very long time due to the operation of TSCH and beside being a problem in the deployment phase it may become a relevant source of energy consumption. To overcome this issue the present contribution investigates the problem of acquiring the first synchronization in a TSCH network from several points of view: (i) two novel mechanisms are proposed and implemented in real motes to speed up joining operations; (ii) for each of them, the average joining time is analytically modeled with closed form expressions as a function of node density, communication reliability, and beacon transmission frequency; (iii) the effectiveness of these novel algorithms and the accuracy of their models are experimentally validated in different scenarios.
IEEE 802.15.4e MAC中的快速连接和同步模式
在最近的IEEE 802.15.4e修正案中引入了时隙信道跳频(TSCH)介质访问控制(MAC),以提高工业应用中短距离无线通信的能源效率和可靠性。然而,由于TSCH的运行,连接阶段可能需要很长时间,除了在部署阶段是一个问题外,它还可能成为能源消耗的相关来源。为了克服这一问题,本文从几个角度研究了在TSCH网络中获得第一次同步的问题:(i)提出了两种新的机制,并在实际中实现,以加快连接操作;(ii)对每一个节点,平均连接时间用节点密度、通信可靠性和信标传输频率的函数的封闭形式表达式解析建模;(iii)这些新算法的有效性及其模型的准确性在不同情景下得到了实验验证。
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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