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首页> 外文期刊>International journal of aerospace engineering >Optimal Maneuver Strategy of Observer for Bearing-Only Tracking in Threat Environment
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Optimal Maneuver Strategy of Observer for Bearing-Only Tracking in Threat Environment

机译:威胁环境中仅方位跟踪的观测器最优机动策略

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摘要

The optimal maneuver of observer for bearing-only tracking (BOT) in a threat environment is a complex problem which involves nonlinear filtering, threat avoidance, and optimal maneuver strategy. Under comprehensive consideration, the reward function comprised of the lower bound on detFIM and threat cost was established; the finite-horizon MDP principle was applied to obtain the optimal strategy. The quantization method was used to discretize the BOT process and calculate the transition matrix of Markov chain; to achieve quantization in the beginning of each period, CKF was applied to provide the initial state estimate and the corresponding error covariance. The numerical simulations illustrated the applicability and superior performance for static and dynamic target tracking in several scenarios in the threat environment.
机译:威胁环境中的仅方位跟踪(BOT)的观察者的最佳机动是一个复杂的问题,涉及非线性过滤,威胁避免和最佳机动策略。经过综合考虑,建立了由detFIM的下限和威胁成本组成的奖励功能;运用了有限水平的MDP原理来获得最优策略。量化方法用于离散化BOT过程并计算马尔可夫链的转移矩阵。为了在每个周期的开始实现量化,应用CKF来提供初始状态估计和相应的误差协方差。数值模拟说明了在威胁环境中的几种情况下,静态和动态目标跟踪的适用性和优越的性能。

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