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Cross-layer network formation for energy-efficient IEEE 802.15.4/ZigBee Wireless Sensor Networks

机译:节能IEEE 802.15.4 / ZigBee无线传感器网络的跨层网络形成

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In IEEE 802.15.4/ZigBee Wireless Sensor Networks (WSNs) a specific node (called the PAN coordinator or sink) controls the whole network. When the network operates in a multi-hop fashion, the position of the PAN coordinator has a significant impact on the performance: it strongly affects network energy consumption for both topology formation and data routing. The development of efficient self-managing, self-configuring and self-regulating protocols for the election of the node that coordinates and manages the IEEE 802.15.4/ ZigBee WSN is still an open research issue. In this paper we present a cross-layer approach to address the problem of PAN coordinator election on topologies formed in accordance with the IEEE 802.15.4. Our solution combines the network formation procedure defined at the MAC layer by the IEEE 802.15.4 standard with a topology reconfiguration algorithm operating at the network layer. We propose a standard-compliant procedure (named PAN coordinator ELection - PANEL) to self-configure a IEEE 802.15.4/ZigBee WSN by electing, in a distributed way, a suitable PAN coordinator. A protocol implementing this solution in IEEE 802.15.4 is also provided. Performance results show that our cross-layer approach minimizes the average number of hops between the nodes of the network and the PAN coordinator allowing to reduce the data transfer delay and determining significant energy savings compared with the performance of the IEEE 802.15.4 standard.
机译:在IEEE 802.15.4 / ZigBee无线传感器网络(WSN)中,特定节点(称为PAN协调器或接收器)控制整个网络。当网络以多跳方式运行时,PAN协调器的位置将对性能产生重大影响:它会极大地影响网络能源的拓扑结构形成和数据路由。对于协调和管理IEEE 802.15.4 / ZigBee WSN的节点的选举,如何开发有效的自我管理,自我配置和自我调节协议仍然是一个尚待研究的问题。在本文中,我们提出了一种跨层方法来解决根据IEEE 802.15.4形成的拓扑中PAN协调器选择的问题。我们的解决方案将IEEE 802.15.4标准在MAC层定义的网络形成过程与在网络层运行的拓扑重新配置算法结合在一起。我们提出了一种符合标准的程序(称为PAN协调器ELection-PANEL),通过以分布式方式选举合适的PAN协调器来自配置IEEE 802.15.4 / ZigBee WSN。还提供了在IEEE 802.15.4中实现此解决方案的协议。性能结果表明,与IEEE 802.15.4标准的性能相比,我们的跨层方法最大程度地减少了网络节点与PAN协调器之间的平均跳数,从而减少了数据传输延迟并显着节省了能源。

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