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Compound Control System Design Based on Hierarchical Sliding Mode and ADRC Techniques for Low Speed Spinning Ballistic Missile

机译:基于分层滑模和ADRC技术的低速旋转弹道导弹复合控制系统设计

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Spin is an effective way to penetrate laser's interception in the first boosting phase. Control couplings, motion couplings and other effects due to spin must be considered in the control system design. Based on the principle of two time-scale separation of missile dynamics, a double-loop design method is applied to the roll channel, its attitude loop and damping loop uses respectively an auto-disturbances-rejection controller (ADRC). For pitch-yaw channel, a hierarchical sliding mode controller is designed to achieve decoupling control, and a nonlinear observer with expanding dimension is introduced into controller to estimate in real time the size of the uncertainties as to weaken the chattering. Numerical simulation results show that this compound controller has strong robustness.
机译:自旋是在第一个增强阶段穿透激光的拦截的有效方法。在控制系统设计中,必须考虑控制联轴器,运动联轴器和其他因旋转而产生的影响。基于导弹动力学两个时标分离的原理,对滚转通道采用双环设计方法,其姿态环和阻尼环分别使用自动扰动抑制控制器(ADRC)。对于俯仰-航向通道,设计了一种分层滑模控制器来实现解耦控制,并且将具有扩展尺寸的非线性观测器引入到控制器中以实时估计不确定性的大小,从而减弱了颤动。数值仿真结果表明,该复合控制器具有很强的鲁棒性。

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