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基于博弈论的无线传感网络节点攻防优化
引用本文:周全兴,李秋贤,王振龙,吴雨龙. 基于博弈论的无线传感网络节点攻防优化[J]. 太赫兹科学与电子信息学报, 2022, 20(2): 181-187,193
作者姓名:周全兴  李秋贤  王振龙  吴雨龙
作者单位:1.1.凯里学院 大数据工程学院,贵州 凯里 556011;2.2.贵州大学 计算机科学与技术学院,贵州 贵阳 550025
基金项目:凯里学院专项课题资助项目(YQZX201907);国家自然科学基金资助项目(61772008;教育部—中国移动科研基金研发资助项目(MCM20170401;贵州省教育厅青年科技人才成长资助项目(QianjiaoheKY [2020]179,[2020]180)
摘    要:针对无线传感器网络各节点在安全需求与资源消耗上存在的矛盾,提出一种基于博弈论的无线传感网络节点优化博弈模型.首先,通过分析网络节点中攻击方的攻击代价与防守方的防守开销,基于博弈论分析攻防双方的效用函数并构造攻防博弈模型;其次,根据网络节点中攻防双方选择的不同行动策略,结合信息论技术将攻防双方抽象成随机变量,并设计博弈信...

关 键 词:博弈论  信息论  无线网络节点  攻防博弈模型  纳什均衡
收稿时间:2020-11-27
修稿时间:2021-01-02

Attack and defense optimization of wireless sensor network nodes based on game theory
ZHOU Quanxing,LI Qiuxian,WANG Zhenlong,WU Yulong. Attack and defense optimization of wireless sensor network nodes based on game theory[J]. Journal of Terahertz Science and Electronic Information Technology, 2022, 20(2): 181-187,193
Authors:ZHOU Quanxing  LI Qiuxian  WANG Zhenlong  WU Yulong
Affiliation:1.1.College of Big Data Engineering, Kaili University, Kaili Guizhou 556011, China;2.2.College of Computer Science and Technology, Guizhou University, Guiyang Guizhou 550025, China
Abstract:Aiming at the contradiction between security requirements and resource consumption of wireless network nodes, a wireless sensor network node optimization game model is proposed based on game theory. Firstly, by analyzing the attack cost of the attacker and the defense cost of the defender in the network node, the utility function of the offense and defense is analyzed based on game theory, and the offense and defense game model is constructed. Secondly, according to the different action strategies selected by the offensive and defensive parties in the network node, combined with information theory technology, the offensive and defensive parties are abstracted into random variables, and the game channel model is designed. Then, the attack cost of the attacker and the defense cost of the defender are analyzed according to the channel capacity and Nash equilibrium fusion theorem. When the utility of both parties in the game reaches the Nash equilibrium, it is equal to the channel capacity. At this time, the action strategy adopted by both parties is the Nash equilibrium solution of the game. Finally, through experiments and simulations on the designed model, the results show that the model effectively reduces the defense overhead of the network system and prolongs the life cycle of the network system while ensuring the security of the wireless transmission network.
Keywords:game theory  information theory  wireless network node  attack-defense game model  Nash equilibrium
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