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RRDVCR: Real-time reliable data delivery based on virtual coordinating routing for Wireless Sensor Networks

机译:RRDVCR:无线传感器网络基于虚拟协调路由的实时可靠数据传递

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Real-time industrial application requires routing protocol that guarantees data delivery with reliable, efficient and low end-to-end delay. Existing Routing(THVR) [13] is based velocity of Two-Hop Velocity and protocol relates two-hop velocity to delay to select the next forwarding node, that has overhead of exchanging control packets, and depleting the available energy in nodes. We propose a Real-Time Reliable Data delivery based on Virtual Coordinates Routing (RRDVCR) algorithm, based on the number of hops to the destination rather than geographic distance. Selection of forwarding node is based on packet progress offered by two-hops, link quality and available energy at the forwarding nodes. All these metric are co-related by dynamic co-relation factor. The proposed protocol uses selective acknowledgment scheme that results in lower overhead and energy consumption. Simulation results shows that there is about 22% and 9.5% decrease in energy consumption compared to SPEED [8] and THVR [13] respectively, 16% and 38% increase in packet delivery compared to THVR [13] and SPEED [8] respectively, and overhead is reduced by 50%.
机译:实时工业应用需要路由协议,以保证可靠,高效和低端到端延迟的数据传输。现有路由(THVR)[13]是基于两跳速率的速度,协议将两跳速率与延迟相关联以选择下一个转发节点,该节点具有交换控制数据包和消耗节点中可用能量的开销。我们提出了一种基于虚拟坐标路由(RRDVCR)算法的实时可靠数据传递,该算法基于到目的地的跳数而不是地理距离。转发节点的选择基于两跳提供的数据包进度,链路质量和转发节点处的可用能量。所有这些度量标准都是通过动态关联因子来关联的。所提出的协议使用选择性确认方案,从而降低了开销和能耗。仿真结果表明,与SPEED [8]和THVR [13]相比,能耗分别降低了22%和9.5%,与THVR [13]和SPEED [8]相比,数据包传递分别提高了16%和38% ,并且开销减少了50%。

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