2018Journal of electromagnetic engineering and scienceOpen access

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

Dang‐An Nguyen, Byoungho Cho, Chulhun Seo, Jeongho Park, Dong-Hui Lee

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Abstract

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.

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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.

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Available abstract

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.

Key concepts: Ballistic missile, Radar, Extended Kalman filter, Control theory (sociology), Kalman filter, Missile, Tracking (education), Acceleration

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