A blended control strategy for intercepting high-speed target in high altitude

Author:

Zhang Youan1,Wu Huali2,Liu Jingmao3,Sun Yumei1

Affiliation:

1. Department of Electrical and Electronic Engineering, Yantai Nanshan University, Yantai Shangdong, PR China

2. Department of Control Engineering, Naval Aeronautical and Astronautical University, Yantai Shangdong, PR China

3. Shandong Nanshan International Flight Co., Ltd, Yantai Shangdong, PR China

Abstract

To intercept target with high speed in high altitude, a blended control strategy is presented. The control strategy consists of two controls, one is the aerodynamic rudder control which is always switched on, another is the lateral jets control which is switched on only when the state variables’ prediction at impact point suggests that the only aerodynamic rudder control is not enough to achieve interception. The objective of this strategy is to save consumption of lateral jets, which is necessary in the case of limited number of jets. The algorithm of state variables’ prediction at impact point is summarized through recursive calculation using the analytic solutions of state variables of the kinematics with consideration of the dynamics of the interceptor (missile) by piecewise linearization and smart approximation. Considering the uncertain dynamics of the interceptor with blended control, a head pursuit robust guidance law is designed based on time-scale separation and robust control, where, the nonlinear deviation dynamics of the relation that the lead angle of the interceptor changes in proportion with that of the target, and the uncertain acceleration dynamics, are treated as the slow subsystem, while the uncertain pitch angular rate dynamics is treated as the fast subsystem. Numerical simulations are performed to verify the performance of the proposed guidance law.

Publisher

SAGE Publications

Subject

Mechanical Engineering,Aerospace Engineering

Cited by 6 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Control Allocation for Spin Interceptor with Aerodynamics and Lateral Thrust Blended;Springer Aerospace Technology;2024

2. Research on forward tracking guidance law based on adaptive fast dynamic surface sliding mode;Third International Conference on Mechanical, Electronics, and Electrical and Automation Control (METMS 2023);2023-07-18

3. Study of Head-Pursuit Cooperative Guidance Law for Near-space Hypersonic Interceptor;Journal of Aerospace Technology and Management;2023

4. Accurate Estimation of 3D-Repetitive-Trajectories using Kalman Filter, Machine Learning and Curve-Fitting Method for High-speed Target Interception;Artificial Intelligence for Robotics and Autonomous Systems Applications;2023

5. Design of finite-time guidance law based on observer and head-pursuit theory;Proceedings of the Institution of Mechanical Engineers, Part G: Journal of Aerospace Engineering;2021-03-10

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