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Maximizing the Lifetime of Wireless Sensor Networks with Mobile Sink in Delay-Tolerant Applications

机译:在容错应用中使用移动接收器最大化无线传感器网络的使用寿命

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This paper proposes a framework to maximize the lifetime of the wireless sensor networks (WSNs) by using a mobile sink when the underlying applications tolerate delayed information delivery to the sink. Within a prescribed delay tolerance level, each node does not need to send the data immediately as it becomes available. Instead, the node can store the data temporarily and transmit it when the mobile sink is at the most favorable location for achieving the longest WSN lifetime. To find the best solution within the proposed framework, we formulate optimization problems that maximize the lifetime of the WSN subject to the delay bound constraints, node energy constraints, and flow conservation constraints. We conduct extensive computational experiments on the optimization problems and find that the lifetime can be increased significantly as compared to not only the stationary sink model but also more traditional mobile sink models. We also show that the delay tolerance level does not affect the maximum lifetime of the WSN.
机译:本文提出了一个框架,当底层应用程序允许延迟的信息传递到接收器时,通过使用移动接收器来最大化无线传感器网络(WSN)的寿命。在规定的延迟容限级别内,每个节点无需立即发送可用的数据。取而代之的是,节点可以临时存储数据,并在移动接收器位于最有利的位置以实现最长的WSN寿命时进行传输。为了在提出的框架内找到最佳解决方案,我们提出了优化问题,这些问题将使WSN的寿命最大化,这取决于延迟限制约束,节点能量约束和流量守恒约束。我们对优化问题进行了广泛的计算实验,发现与固定水槽模型以及更传统的移动水槽模型相比,使用寿命可以大大延长。我们还表明,延迟容限级别不会影响WSN的最大寿命。

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