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Consensus based distributed joint power and routing optimization in wireless sensor networks

机译:无线传感器网络中基于共识的分布式联合电源和路由优化

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摘要

This paper proposes a fast distributed optimization algorithm for total transmit power minimization in single-sink data gathering wireless sensor networks. Many of the existing decentralized optimization algorithms addressing cross-layer design over the physical and network layer are based on dual decomposition. Our design includes joint power and routing optimization with given source rates by using consensus mechanism in conjunction with alternating direction method of multipliers (ADMM). Thus, the problem is decoupled across the nodes via introducing local copies of the variables, which are then iteratively driven into consensus with the ADMM. By the numerical experiments, the proposed distributed algorithm is shown to converge significantly faster to near optimal solutions with a small amount of local variable exchange as compared to the existing methods based on the dual decomposition.
机译:本文提出了一种快速分布式优化算法,用于在单接收器数据收集无线传感器网络中使总发射功率最小化。解决物理层和网络层上跨层设计的许多现有分散优化算法都是基于双重分解的。我们的设计包括使用共识机制结合乘数交替方向方法(ADMM),以给定的源速率进行联合功率和路由优化。因此,通过引入变量的本地副本将问题跨节点解耦,然后将其局部迭代地与ADMM达成共识。通过数值实验,与基于对偶分解的现有方法相比,所提出的分布式算法显示出收敛速度更快,收敛速度接近最优解,且局部变量交换量较小。

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