首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Robust adaptive sliding sector control and control allocation of a missile with aerodynamic control surfaces and reaction jets
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Robust adaptive sliding sector control and control allocation of a missile with aerodynamic control surfaces and reaction jets

机译:具有气动控制面和反作用射流的导弹的鲁棒自适应滑动扇区控制和控制分配

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摘要

Based on L-2 optimal control allocation, an autopilot design approach is proposed for the missile with aerodynamic control surfaces and reaction jets. The control system involves a control allocator and a virtual control law. A robust sliding sector with a parameter update law is proposed to deal with unmatched parameter uncertainties and unknown disturbances in the system. Then a control law is designed to produce virtual control effort signals by using the robust adaptive sliding sector. In order to distribute the virtual signals to the aerodynamic control surfaces and reaction jets on the missile, a control allocator is designed by L-2 optimal control allocation strategy. Simulation results show that the missile control system tracks the acceleration command fast and smoothly. In the tracking process, aerodynamic control surfaces cooperate with reaction jets, verifying the effectiveness of the proposed approach.
机译:基于L-2最优控制分配,提出了一种具有气动控制面和反作用射流的导弹自动驾驶仪设计方法。控制系统包括控制分配器和虚拟控制律。提出了一种具有参数更新定律的鲁棒滑移扇区,用于处理系统中不匹配的参数不确定性和未知干扰。然后设计控制律,以通过使用鲁棒的自适应滑动扇区来产生虚拟控制力信号。为了将虚拟信号分配到导弹的气动控制面和反作用射流,采用L-2最优控制分配策略设计了控制分配器。仿真结果表明,导弹控制系统能够快速,平稳地跟踪加速度指令。在跟踪过程中,空气动力学控制面与反应射流配合,验证了所提出方法的有效性。

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