Maximum lifetime transmission in wireless sensor networks for a common source observation

Xiaolu Zhang, M. Tao, C. Ng
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Abstract

Energy efficient transmission is of vital importance in the design of wireless sensor networks (WSN).Minimizing the sum of energy consumption of all sensor nodes in the network may lead to some nodes with non-rechargeable batteries running out of energy quickly. In this paper, we consider to maximize the time until the first node fails in the network, namely, the network lifetime. Transmission schemes in a WSN where multiple sensors observe a common physical phenomenon are investigated. We show that the optimal joint time and power control (JTPC) takes advantage of ldquolazy schedulingrdquo and ldquoopportunistic quantizationrdquo. We then demonstrate that the JTPC can be implemented in a partially distributed manner. Numerical results show that significant lifetime gain can be achieved when compared with existing scheduling algorithms.
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在一个共同的源观测无线传感器网络的最大寿命传输
在无线传感器网络(WSN)的设计中,节能传输是至关重要的。最小化网络中所有传感器节点的能量消耗总和可能会导致一些带有不可充电电池的节点很快耗尽能量。在本文中,我们考虑最大限度地延长网络中第一个节点失效的时间,即网络生存期。研究了多传感器观测共同物理现象的无线传感器网络的传输方案。我们证明了最优的时间和功率联合控制(JTPC)利用了ldquolzy调度和ldquoo机会量化。然后,我们演示了JTPC可以以部分分布式的方式实现。数值结果表明,与现有的调度算法相比,该算法可以获得显著的寿命增益。
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