Distributed optimization game algorithm to improve energy efficiency for multi-radio multi-channel wireless sensor network

Ning Yao, Bai Chen, Jiaojiao Wang, Liyuan Wang, Xiaochen Hao
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Abstract

To send and receive data simultaneously, reduce network interference, and effectively improve energy efficiency, this paper analyzes the network characteristics of Multi-Radio Multi-Channel Wireless Sensor Network and optimizes the power and channel of each radio frequency interface. Based on the novel energy efficiency model and energy consumption efficiency model, this paper establishes a distributed optimization game model using Game Theory to maximize network energy efficiency, minimize energy consumption, and ensure network connectivity. Based on the game model, an efficient distributed resource allocation game algorithm is designed, in which a joint power control and channel allocation can quickly converge to Nash Equilibrium with low complexity. At the same time, the simulation results show that the distributed resource allocation game algorithm can effectively improve the energy efficiency, reduce network interference and bit error rate to ensure the successful data transmission.
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提高多无线电多信道无线传感器网络能效的分布式优化博弈算法
为了同时发送和接收数据、减少网络干扰并有效提高能效,本文分析了多射频多信道无线传感器网络的网络特性,并优化了每个射频接口的功率和信道。基于新颖的能效模型和能耗效率模型,本文利用博弈论建立了分布式优化博弈模型,以实现网络能效最大化、能耗最小化并确保网络连通性。基于博弈模型,设计了一种高效的分布式资源分配博弈算法,其中功率控制和信道分配联合算法能以较低的复杂度快速收敛到纳什均衡。同时,仿真结果表明,分布式资源分配博弈算法能有效提高能效,降低网络干扰和误码率,确保数据传输成功。
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