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用于无线通信系统底层分布式多雷达架构中功率控制的纳什议价博弈理论框架

Nash Bargaining Game-Theoretic Framework for Power Control in Distributed Multiple-Radar Architecture Underlying Wireless Communication System.

作者信息

Shi Chenguang, Wang Fei, Salous Sana, Zhou Jianjiang, Hu Zhentao

机构信息

Key Laboratory of Radar Imaging and Microwave Photonics, Ministry of Education, Nanjing University of Aeronautics and Astronautics, Nanjing 210016, China.

School of Engineering and Computing Sciences, Durham University, Durham DH1 3DE, UK.

出版信息

Entropy (Basel). 2018 Apr 11;20(4):267. doi: 10.3390/e20040267.

Abstract

This paper presents a novel Nash bargaining solution (NBS)-based cooperative game-theoretic framework for power control in a distributed multiple-radar architecture underlying a wireless communication system. Our primary objective is to minimize the total power consumption of the distributed multiple-radar system (DMRS) with the protection of wireless communication user's transmission, while guaranteeing each radar's target detection requirement. A unified cooperative game-theoretic framework is proposed for the optimization problem, where interference power constraints (IPCs) are imposed to protect the communication user's transmission, and a minimum signal-to-interference-plus-noise ratio (SINR) requirement is employed to provide reliable target detection for each radar. The existence, uniqueness and fairness of the NBS to this cooperative game are proven. An iterative Nash bargaining power control algorithm with low computational complexity and fast convergence is developed and is shown to converge to a Pareto-optimal equilibrium for the cooperative game model. Numerical simulations and analyses are further presented to highlight the advantages and testify to the efficiency of our proposed cooperative game algorithm. It is demonstrated that the distributed algorithm is effective for power control and could protect the communication system with limited implementation overhead.

摘要

本文提出了一种基于新型纳什议价解决方案(NBS)的合作博弈理论框架,用于无线通信系统底层分布式多雷达架构中的功率控制。我们的主要目标是在保护无线通信用户传输的同时,最小化分布式多雷达系统(DMRS)的总功耗,同时保证每个雷达的目标检测要求。针对该优化问题,提出了一个统一的合作博弈理论框架,其中施加干扰功率约束(IPC)以保护通信用户的传输,并采用最小信干噪比(SINR)要求为每个雷达提供可靠的目标检测。证明了该合作博弈的NBS的存在性、唯一性和公平性。开发了一种具有低计算复杂度和快速收敛性的迭代纳什议价功率控制算法,并证明其收敛于合作博弈模型的帕累托最优均衡。进一步进行了数值模拟和分析,以突出我们提出的合作博弈算法的优势并证明其有效性。结果表明,该分布式算法对于功率控制是有效的,并且可以在有限的实现开销下保护通信系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc69/7512782/128e791736c6/entropy-20-00267-g001.jpg

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