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Node disjoint multi-path routing for ZigBee cluster-tree wireless sensor networks

机译:ZigBee集群树无线传感器网络的节点不相交多路径路由

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ZigBee is the emerging industrial standard for Ad hoc networks based on the IEEE 802.15.4 physical and MAC layers standard. It was originally specified for low data rate, low power consumption and low cost wireless personal area networks (WPANs). Due to these characteristics, ZigBee is expected to be used in wireless sensor networks (WSNs) for industrial sensing and control applications. Handling high data rate applications, such video surveillance in WPANs is a real challenge. To increase available bandwidth in a ZigBee network, we explore in this paper, multipath routing where multiple paths are used simultaneously to transfer data between a source and the sink. We propose Z-MHTR, a node disjoint multipath routing extension of the ZigBee hierarchical tree routing protocol in cluster-tree WSN. The aim of this work is to study and evaluate the implemented multipath routing using NS2 simulations. We mainly faced some problems that influence the efficiency of the multipath routing and the overall network performances in terms of throughput, end to end delay data transmission and network lifetime under heavy and low data rates.
机译:Zigbee是基于IEEE 802.15.4物理和MAC层标准的Ad Hoc网络的新兴工业标准。它最初为低数据速率,低功耗和低成本无线个人区域网络(WPAN)指定。由于这些特性,预计ZigBee将用于用于工业传感和控制应用的无线传感器网络(WSN)。处理高数据速率应用,WPAN中的这种视频监控是一个真正的挑战。为了在ZigBee网络中增加可用带宽,我们探讨了本文,多径路由,其中​​多路径同时使用以在源和接收器之间传输数据。我们提出z-MHTR,ZigBee分层树路由协议中的节点脱位多路由扩展为群集树WSN。这项工作的目的是使用NS2模拟学习和评估实现的多径路由。我们主要面临一些影响多径路由效率和在吞吐量方面的整体网络性能的问题,并在繁重和低数据速率下结束终端延迟数据传输和网络寿命。

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