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Analysis of the Optimal Frequency Band for a Ballistic Missile Defense Radar System

机译:弹道导弹防御雷达系统的最佳频带分析

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In this paper, we consider the anti-attack procedure of a ballistic missile defense system (BMDS) at different operating frequencies at its phased-array radar station. The interception performance is measured in terms of lateral divert (LD), which denotes the minimum acceleration amount available in an interceptor to compensate for prediction error for a successful intercept. Dependence of the frequency on estimation accuracy that leads directly to prediction error is taken into account, in terms of angular measurement noises. The estimation extraction is performed by means of an extended Kalman filter (EKF), considering two typical re-entry trajectories of a non-maneuvering ballistic missile (BM). The simulation results show better performance at higher frequency for both tracking and intercepting aspects.
机译:在本文中,我们考虑了相控阵雷达站在不同工作频率下的弹道导弹防御系统(BMDS)的反攻击程序。拦截性能以横向转移(LD)来衡量,该值表示拦截器中可用于补偿成功拦截的预测误差的最小加速度。就角度测量噪声而言,考虑了频率对直接导致预测误差的估计精度的依赖性。考虑到非机动弹道导弹(BM)的两种典型的再入轨迹,估计提取是通过扩展卡尔曼滤波器(EKF)进行的。仿真结果表明,在跟踪和拦截方面,高频情况下的性能都更好。

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