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Impact of mobility on the IoT MAC infrastructure: IEEE 802.15.4e TSCH and LLDN platform

机译:移动性对物联网MAC基础架构的影响:IEEE 802.15.4e TSCH和LLDN平台

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Realizing the target of high reliability and availability is a crucial concept in the IoT context. Different types of IoT applications introduce several requirements and obstacles. One of the important aspects degrading network performance is the node mobility inside the network. Without a solid and adaptive mechanism, node mobility can disrupt the network performance due to dissociations from the network. Hence, reliable techniques must be incorporated to tackle the overhead of node movement. In this paper, the overhead of mobility on both IEEE 802.15.4e timeslotted channel hopping (TSCH) and low latency deterministic (LLDN) modes is investigated. These two modes can be considered as the MAC layer of the IoT paradigm because of their importance and resilience to different network obstacles. In addition, the set of metrics and limitations that influence the network survivability will be identified to ensure efficient mobile node handling process. Both TSCH and LLDN have been implemented via the Contiki OS to determine their functionality. TSCH has been demonstrated to have better node connectivity due to the impact of frame collision in LLDN. In addition, by neglecting the overhead of collision, the LLDN has been shown to have better connectivity and low radio duty cycle (RDC).
机译:在物联网环境中,实现高可靠性和可用性的目标是至关重要的概念。不同类型的物联网应用带来了一些要求和障碍。降低网络性能的重要方面之一是网络内部的节点移动性。如果没有可靠的自适应机制,节点移动性可能会由于与网络的分离而破坏网络性能。因此,必须结合可靠的技术来解决节点移动的开销。本文研究了IEEE 802.15.4e时隙信道跳变(TSCH)和低延迟确定性(LLDN)模式下的移动性开销。由于这两种模式的重要性和对不同网络障碍的适应性,因此可以将其视为IoT范例的MAC层。另外,将确定影响网络生存能力的一组度量和限制,以确保有效的移动节点处理过程。 TSCH和LLDN已通过Contiki OS实现,以确定其功能。由于LLDN中的帧冲突的影响,已证明TSCH具有更好的节点连接性。此外,通过忽略冲突的开销,已显示LLDN具有更好的连接性和较低的无线电占空比(RDC)。

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