Distributed power and routing optimization in single-sink data gathering wireless sensor networks

Markus Leinonen, J. Karjalainen, M. Juntti
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引用次数: 9

Abstract

This paper addresses a total transmission power minimization problem in single-sink data gathering wireless sensor network. We propose a distributed algorithm for solving the convex problem with partial dual decomposition approach by jointly optimizing the routing and the power allocation. We assume orthogonal multiple access communications under Rayleigh fading. By applying dual decomposition for relaxing the coupling constraint, the optimization problem is decomposed vertically into two independently solvable subproblems: the routing problem in the network layer and the power allocation problem in the physical layer. Furthermore, second-level dual decompositions are performed for distributing the solution process horizontally within each layer. The master dual problem coordinates the whole solution process by introducing the pricing on the link capacities. Gradient projection method is employed to update the primal and dual variables iteratively. Numerical results are provided to show the convergence properties in a static channel and the tracking ability under time-varying Rayleigh channels.
单接收器数据采集无线传感器网络中的分布式功率和路由优化
本文研究了单接收器数据采集无线传感器网络中总传输功率的最小化问题。提出了一种采用局部对偶分解方法求解凸问题的分布式算法,通过对路由和功率分配进行联合优化。我们假设瑞利衰落下的正交多址通信。通过对偶分解来放松耦合约束,将优化问题垂直分解为两个独立可解的子问题:网络层的路由问题和物理层的功率分配问题。此外,为了在每一层内水平分布溶液过程,进行了二级双重分解。主对偶问题通过引入链路容量的定价来协调整个求解过程。采用梯度投影法迭代更新原变量和对偶变量。数值结果显示了该方法在静态信道中的收敛性和在时变瑞利信道下的跟踪能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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