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Two Thresholds Working Vacation Policy for Improving Energy Consumption and Latency in WSNs

机译:两个门槛工作假期政策,用于提高WSNS中的能耗和延迟

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Motivated by the need of an efficient energy-saving scheme in Wireless Sensor Networks (WSNs), several works considered variants of vacation queueing models with N-policy which is designed as an efficient queued wakeup scheme for improving the lifetime of WSNs. However, it can have a significant negative impact on the latency delay of data packets. The aim of the present paper is to propose an energy saving and latency efficiency technique for full-duplex wireless sensor nodes, based on a combination of normal vacation and working vacation policy, that we called the two thresholds working vacation policy. Moreover, we propose the modeling and the performance analysis of the new queueing vacation policy using the Generalized Stochastic Petri Nets formalism. To this end, we developed the formulas of the main stationary performance indices and energy consumption. Finally, we give a detailed analysis that proves the efficiency of the proposed approach.
机译:由于无线传感器网络(WSN)中有效节能方案的需要,有几种作品认为具有N-Policy的假期排队模型的变体,该策略被设计为一种有效的排队唤醒方案,用于改善WSN的寿命。但是,它可以对数据包的延迟延迟产生显着的负面影响。本文的目的是提出基于正常度假和工作度假政策的组合,提出全双工无线传感器节点的节能和潜伏期效率技术,即我们称之为两个阈值工作度假策略。此外,我们提出了使用广义随机Petri网式主义的新排队休假政策的建议和性能分析。为此,我们开发了主要的静止性能指数和能耗的公式。最后,我们提供了详细的分析,证明了提出的方法的效率。

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