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A cross-layer MAC protocol for contention reduction and pipelined flow optimization in wireless sensor networks

机译:一种用于减少无线传感器网络中的竞争和流水线流优化的跨层MAC协议

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摘要

In this paper, we present a novel contention based cross-layer synchronous MAC protocol, CROP-MAC, to reduce the end-to-end transmission delay and energy consumption by optimizing the pipelined flow of data packets in wireless sensor networks. CROP-MAC optimizes pipelined flow with the help of staggered sleep/wake scheduling, efficient synchronization and appropriate use of routing layer information. Staggered sleep/wake scheduling and routing layer information enable CROP-MAC to schedule source to sink transmission of multiple data packets in a single cycle. We evaluate CROP-MAC through ns-2.35 simulations and compare it with PMAC, PRMAC and BulkMAC. Simulation results show, CROP-MAC outperforms best of the three protocols by 608.89 %, 14.36 % and 12.5 % in terms of end-to-end transmission delay, packet delivery ratio and energy consumption, respectively.
机译:在本文中,我们提出了一种新颖的基于竞争的跨层同步MAC协议CROP-MAC,以通过优化无线传感器网络中数据包的流水线流量来减少端到端的传输延迟和能耗。 CROP-MAC借助交错的睡眠/唤醒调度,有效的同步以及对路由层信息的适当使用来优化流水线流。交错的睡眠/唤醒调度和路由层信息使CROP-MAC能够调度源,以在单个周期中接收多个数据包的传输。我们通过ns-2.35仿真评估CROP-MAC,并将其与PMAC,PRMAC和BulkMAC进行比较。仿真结果表明,就端到端传输延迟,数据包传输率和能耗而言,CROP-MAC的性能分别优于这三种协议的608.89%,14.36%和12.5%。

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