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A New Topology Time Division Beacon Construction Approach for IEEE802.15.4/ZigBee Cluster-Tree Wireless Sensor Networks

机译:IEEE802.15.4 / ZigBee集群树无线传感器网络的一种新的拓扑时分信标构建方法

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Wireless Sensor Networks (WSN) based on the IEEE 802.15.4 standard are constantly expanding. Applications like production control, building control are more and more based on WSN because of their energy efficiency, self-organizing capacity and protocol flexibility. The IEEE 802.15.4 standard defines 3 network topologies: the mesh topology, the star topology and the Cluster-Tree topology. However, the construction of Cluster-Tree networks based on the beacon mode is still undefined by the IEEE 802.15.4 standard. A Beacon Cluster-Tree topology has the advantage of giving all the benefits of the Beacon mode (Synchronization, QoS support through Guaranteed Time Slots) and at the same time, allows the construction of large networks to cover large areas. In order to enable the construction of such topology, i.e., Beacon Cluster-Tree, we present, in this paper, a new topology construction approach. The presented approach is based on the exploitation of RF front-end capabilities in treating multipath signals and, thus, avoiding the introduction of beacon or Super Frames scheduling algorithms. Avoiding the introduction of scheduling algorithms ensures a simple solution that could be easily implemented and executed by sensor nodes.
机译:基于IEEE 802.15.4标准的无线传感器网络(WSN)正在不断扩展。由于其能效,自组织能力和协议灵活性,生产控制,建筑控制等应用越来越多地基于WSN。 IEEE 802.15.4标准定义了3种网络拓扑:网状拓扑,星形拓扑和群集树拓扑。但是,IEEE 802.15.4标准仍未定义基于信标模式的群集树网络的构造。信标群集树拓扑的优点是可以提供信标模式的所有优点(同步,通过保证的时隙提供QoS支持),并且同时允许构建覆盖大区域的大型网络。为了能够构建这样的拓扑,即信标簇树,在本文中,我们提出了一种新的拓扑构建方法。提出的方法是基于RF前端功能在处理多径信号方面的开发,因此避免了引入信标或超帧调度算法。避免引入调度算法,可以确保可以由传感器节点轻松实现和执行的简单解决方案。

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