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Distribution of miss distance for pursuit-evasion problem

机译:追求逃避问题的错过距离分配

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摘要

Miss distance is a critical parameter of assessing the performance for highly maneuvering targets interception (HMTI). In a realistic terminal guidance system, the control of pursuer depends on the estimate of unknown state, thus the miss distance becomes a random variable with a prior unknown distribution. Currently, such a distribution is mainly evaluated by the method of Monte Carlo simulation. In this paper, by integrating the estimation error model of zero-effort miss distance (ZEM) obtained by our previous work, an analytic method for solving the distribution of miss distance is proposed, in which the system is presumed to use a bang-bang control strategy. By comparing with the results of Monte Carlo simulations under four different types of disturbances (maneuvers), the correctness of the proposed method is validated. Results of this paper provide a powerful tool for the design, analysis and performance evaluation of guidance system.
机译:距离是评估高机动目标拦截(HMTI)性能的关键参数。在现实的终端指导系统中,追求者的控制取决于未知状态的估计,因此错过距离成为具有先前未知分布的随机变量。目前,这种分布主要通过蒙特卡罗模拟方法来评估。在本文中,提出了通过整合我们以前的工作获得的零筹距离(ZEM)的估计误差模型,提出了解决错过距离分布的分析方法,其中系统被推测使用Bang-Bang控制策略。通过与四种不同类型的扰动(机动)下的蒙特卡罗模拟的结果进行比较,验证了所提出的方法的正确性。本文的结果为指导系统的设计,分析和性能评估提供了强大的工具。

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