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An Energy-Efficient and Low-Latency Sink Positioning Approach for Wireless Sensor Networks

机译:用于无线传感器网络的节能和低延迟宿宿定位方法

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This paper investigates the sink positioning problem in Wireless Sensor Networks(WSNs) with the consideration of the energy-latency trade-offs. Energy-efficiency and low-latency are two major objectives in most researches on WSNs. Positioning the sink properly and exploiting its mobility can improve the two performances. A novel linear programming model is proposed to solve the sink positioning problem. Its objective function represents the overall performance of the network lifespan and the average packet latency. We can get not only the position pattern of the sink but also the sojourn time ratio for each possible position according to the optimization results. Simulations are accomplished on NS-2. The results show that compared with a static sink approach or a positioning approach which only concerns the energy-efficiency, our approach can greatly shorten the average packet latency and prolong the network lifespan, especially when the sensor nodes are distributed asymmetrically or the traffic load is unbalanced.
机译:本文通过考虑到能量延迟权衡,研究了无线传感器网络(WSNS)中的水槽定位问题。能源效率和低延迟是WSN大多数研究中的两个主要目标。正确定位水槽并利用其移动性可以改善两次表演。提出了一种新颖的线性规划模型来解决水槽定位问题。其目标函数表示网络寿命的整体性能和平均数据包延迟。我们可以根据优化结果,不仅可以获得水槽的位置图案,还可以获得每个可能位置的测定时间比。在NS-2完成模拟。结果表明,与静态水槽方法或仅涉及能量效率的定位方法相比,我们的方法可以大大缩短平均数据包延迟并延长网络寿命,特别是当传感器节点不对称或交通负荷分布时不平衡。

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