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首页> 外文期刊>Wireless communications & mobile computing >EEHRT: Energy Efficient Technique for Handling Redundant Traffic in Zone-Based Routing for Wireless Sensor Networks
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EEHRT: Energy Efficient Technique for Handling Redundant Traffic in Zone-Based Routing for Wireless Sensor Networks

机译:EEHRT:用于在基于区域的无线传感器网络中处理冗余流量的节能技术

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This paper presents an energy-efficient technique to handle redundant traffic (EEHRT) in the zone-based routing for wireless sensor networks. In this technique, multihop routing is performed based on the remaining energy of the nodes. Afterwards, it performs position-based routing without the need for the nodes to know their respective position. The main objective of this paper is to handle the redundant packets generated in zone-based routing using short beacon messages. Nodes of lower zones route the data of the higher zone to base station (BS) with a minimum number of hops and utilize only those nodes on the path which are energy efficient and located closer to BS. Moreover, the source node is acknowledged by the relaying node using a wireless broadcast advantage (WBA) without sending any special ACK packet to the sender, which reduces the control overhead in the routing process. The EEHRT technique improves the routing against RARZ by ensuring only one copy of the packet is propagated at each hop along the routing path to BS. Simulation results show that EEHRT achieved 28% improvement in energy efficiency, 10% and 25% improvements in data throughput against total and distinct packet reception at BS respectively, 35% increase in overall network lifetime, and 100% reduction in redundant packets generation and propagation in the network against RARZ routing.
机译:本文提出了一种节能技术,可以在基于区域的无线传感器网络的路由中处理冗余流量(EEHRT)。在该技术中,基于节点的剩余能量执行多彩路由。之后,它执行基于位置的路由,而无需节点知道其各自的位置。本文的主要目的是使用短信号消息处理基于区域的路由中生成的冗余数据包。下部区域的节点将较高区域的数据路由到基站(BS),最小数量的跳跃,并且仅利用节点上的节点,该节点是能量效率并且靠近BS。此外,使用无线广播优势(WBA)由中继节点(WBA)确认源节点而不向发送方发送任何特殊的ACK分组,这减少了路由过程中的控制开销。 EEHRT技术通过确保仅在沿着BS的路由路径的每个跳中传播数据包的一个副本来改善RARZ的路由。仿真结果表明,EEHRT在BS的总和不同分组接收的情况下实现了28%的能效,10%和25%的数据吞吐量的提高,整体网络寿命的增加35%,冗余分组的产生和传播减少了100%在网络中反对Rarz路由。

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