Sun Jingliang, Liu Chunsheng
School of Aerospace Engineering, Beijing Institute of Technology, Beijing 100081, China; Key Laboratory of Dynamics and Control of Flight Vehicle, Ministry of Education China, Beijing 100081, China.
College of Automation Engineering, Nanjing University of Aeronautics and Astronautics, Nanjing, Jiangsu 210016, China.
ISA Trans. 2020 Dec;107:294-306. doi: 10.1016/j.isatra.2020.07.042. Epub 2020 Aug 6.
This paper addresses a missile-target interception guidance process considering acceleration saturation and target maneuver as a constrained nonlinear tracking issue. A dynamic auxiliary system is designed for compensating the effects of constrained input, and external disturbances are counteracted through designing a nonlinear disturbance observer (NDO). The feedforward+feedback composite architecture is built in which a feedforward backstepping control and a feedback optimal control is presented recurrently. Furthermore, the parameter adaptive updating laws are derived to estimate the unknown functions online. Subsequently, the boundedness of the closed-loop signals are guaranteed. The predefined cost function is also ensured to be minimized. Furthermore, the control input is prevented violating its boundary. The contrastive simulation results demonstrate that the robustness of the proposed method is more superior to the nonsingular terminal sliding mode (NTSM) and the proportional navigation (PN) methods.
本文将考虑加速度饱和与目标机动的导弹-目标拦截制导过程作为一个受约束的非线性跟踪问题进行研究。设计了一个动态辅助系统来补偿约束输入的影响,并通过设计非线性干扰观测器(NDO)来抵消外部干扰。构建了前馈+反馈复合结构,其中反复提出了前馈反步控制和反馈最优控制。此外,推导了参数自适应更新律以在线估计未知函数。随后,保证了闭环信号的有界性。还确保了预定义的代价函数最小化。此外,防止控制输入违反其边界。对比仿真结果表明,所提方法的鲁棒性优于非奇异终端滑模(NTSM)和比例导引(PN)方法。