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作 者:孟乐 张琳[1] 孟宪良 王振洋 张搏[1] MENG Le;ZHANG Lin;MENG Xianliang;WANG Zhenyang;ZHANG Bo(Air Force Engineering University,Xi’an 710051,China;Unit 31662 of PLA,Linxia 731100,China;Unit 94175 of PLA,Wulumuqi 830000,China)
机构地区:[1]空军工程大学,西安710051 [2]31662部队,甘肃临夏731100 [3]94175部队,乌鲁木齐830000
出 处:《兵器装备工程学报》2024年第4期196-203,共8页Journal of Ordnance Equipment Engineering
摘 要:针对无人装备系统的网络拓扑结构优化,着力提升网络拓扑弹性,增强装备系统抵抗风险能力这一问题,主要是对无人装备系统网络结构特点进行分析,以无人装备系统的弹性度量和弹性优化理论为基础构建出PA优化算法,通过增加优化边的策略达到提升无人装备系统的弹性的目的,最后通过案例验证了该方法的科学性和有效性,表明该方法能够极大程度上提升网络拓扑弹性,增强网络结构的强度和韧性,对恶意攻击的抵御能力显著增强,对提升装备系统的作战效能具有重要意义。Aiming at the optimization of the network topology structure of the unmanned equipment system,the paper focuses on improving the network topology resilience and enhancing the risk resistance ability of the equipment system,mainly analyzes the characteristics of the network structure of the unmanned equipment system,and constructs the PA optimization algorithm based on the resilient measurement and resilient optimization theory of the unmanned equipment system.The purpose of improving the resilience of the unmanned equipment system is achieved by adding the strategy of optimizing the edge.Finally,the scientific and effective method is verified by a case study,which shows that the method can greatly improve the topological resilience of the network,enhance the strength and toughness of the network structure,and significantly enhance the resistance to malicious attacks,which is of great significance for improving the combat effectiveness of the equipment system.
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