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Packet Length Adaptation for Energy-Proportional Routing in Clustered Sensor Networks

机译:集群传感器网络中能量比例路由的分组长度适配

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We study the maximization of throughput and energy utilization in noisy wireless channels by adjusting packet length adaptively to network instant statistics. The optimal packet length adaptation (PLA) for throughput and energy utilization in wireless networks with and without re-transmission is respectively derived and developed. As more noises introducing more energy consumptions, the noises are equivalently regarded as lengthening of transmission distances. Therefore, an equivalent distance model of noisy channels is developed for more accurate estimation of the dissipated proportion in the residual energy such that further improvement of energy utilization and throughput is obtained. We integrate the PLA with the energy-proportional routing (EPR) algorithm for best balance of energy load. Therefore, performance metrics such as lifetime extension, throughput, and energy utilization are maximized even the distribution of channel noise is so un-predictable. Since the equivalent distance is dynamic, we believe that it is useful for network topology re-organization and will be useful in the future work of mobile ad-hoc networks.
机译:我们通过适应网络即时统计来调整数据包长度来研究嘈杂无线信道的吞吐量和能量利用的最大化。用于吞吐量和能量利用的最佳分组长度适配(PLA)与无线网络中的吞吐量和能量利用率,并导出和开发。随着更多噪音引入更多能耗,噪声等同于传输距离的延长。因此,开发了噪声信道的等同距离模型,以便在剩余能量中更准确地估计耗散比例,使得获得能量利用和产量的进一步提高。我们将PLA与能量 - 比例路由(EPR)算法集成,以获得最佳能量负荷平衡。因此,即使信道噪声的分布也是不可预测的,寿命扩展,吞吐量和能量利用等寿命扩展,吞吐量和能量利用的性能度量也是最大的。由于等效距离是动态的,我们认为它对于网络拓扑重新组织是有用的,并且在移动ad-hoc网络的未来工作中有用。

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