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Multi-agent decision support system for missile defense based on improved PSO algorithm

机译:基于改进PSO算法的导弹防御多主体决策支持系统

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摘要

Ballistic missile defense system (BMDS) is important for its special role in ensuring national security and maintaining strategic balance. Research on modeling and simulation of the BMDS beforehand is essential as developing a real one requires lots of manpower and resources. BMDS is a typical complex system for its nonlinear, adaptive and uncertainty characteristics. The agent-based modeling method is well suited for the complex system whose overall behaviors are determined by interactions among individual elements. A multi-agent decision support system (DSS), which includes missile agent, radar agent and command center agent, is established based on the studies of structure and function of BMDS. Considering the constraints brought by radar, intercept missile, offensive missile and commander, the objective function of DSS is established. In order to dynamically generate the optimal interception plan, the variable neighborhood negative selection particle swarm optimization (VNNSPSO) algorithm is proposed to support the decision making of DSS. The proposed algorithm is compared with the standard PSO, constriction factor PSO (CFPSO), inertia weight linear decrease PSO (LDPSO), variable neighborhood PSO (VNPSO) algorithm from the aspects of convergence rate, iteration number, average fitness value and standard deviation. The simulation results verify the efficiency of the proposed algorithm. The multi-agent DSS is developed through the Repast simulation platform and the constructed DSS can generate intercept plans automatically and support three-dimensional dynamic display of missile defense process.
机译:弹道导弹防御系统(BMDS)对于其在确保国家安全和维持战略平衡方面的特殊作用至关重要。事先对BMDS的建模和仿真进行研究是必不可少的,因为开发一个真正的BMDS需要大量的人力和资源。 BMDS因其非线性,自适应和不确定性特性而成为典型的复杂系统。基于主体的建模方法非常适合复杂系统,该系统的总体行为由各个元素之间的交互作用决定。在对BMDS的结构和功能进行研究的基础上,建立了包括导弹特工,雷达特工和指挥中心特工在内的多特工决策支持系统。考虑到雷达,拦截弹,进攻性导弹和指挥官的局限性,建立了DSS的目标功能。为了动态生成最优的拦截计划,提出了可变邻域负选择粒子群算法(VNNSPSO)来支持决策支持系统的决策。从收敛速度,迭代次数,平均适应度和标准差等方面,将该算法与标准PSO,压缩因子PSO(CFPSO),惯性权重线性降低PSO(LDPSO),可变邻域PSO(VNPSO)算法进行了比较。仿真结果验证了所提算法的有效性。多主体DSS是通过Repast仿真平台开发的,所构建的DSS可以自动生成拦截计划并支持导弹防御过程的三维动态显示。

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