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Robust partial integrated guidance and control for missiles via extended state observer

机译:通过扩展的状态观察器对导弹进行鲁棒的部分集成制导和控制

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摘要

A novel extended state observer (ESO) based control is proposed for a class of nonlinear systems subject to multiple uncertainties, and then applied to partial integrated guidance and control (PIGC) design for a missile. The proposed control strategy incorporates both an ESO and an adaptive sliding mode control law. The multiple uncertainties are treated as an extended state of the plant, and then estimate them using the ESO and compensate for them in the control action, in real time. Based on the output of the ESO, the resulting adaptive sliding mode control law is inherently continuous and differentiable. Strict proof is given to show that the estimation error of the ESO can be arbitrarily small in a finite time. In addition, the adaptive sliding mode control law can achieve finite time convergence to a neighborhood of the origin, and the accurate expression of the convergent region is given. Finally, simulations are conducted on the planar missile-target engagement geometry. The effectiveness of the proposed control strategy in enhanced interception performance and improved robustness against multiple uncertainties are demonstrated. (C) 2016 ISA. Published by Elsevier Ltd. All rights reserved.
机译:针对一类具有多个不确定性的非线性系统,提出了一种基于新型扩展状态观测器(ESO)的控制方法,并将其应用于导弹的局部集成制导与控制(PIGC)设计。所提出的控制策略结合了ESO和自适应滑模控制定律。将多个不确定性视为工厂的扩展状态,然后使用ESO进行估算,并在控制操作中进行实时补偿。根据ESO的输出,所得的自适应滑模控制定律本质上是连续的且可微分的。严格证明,ESO的估计误差可以在有限的时间内任意减小。另外,自适应滑模控制律可以实现到原点附近的有限时间收敛,并给出收敛区域的精确表达式。最后,对平面导弹-目标交战几何进行了仿真。证明了所提出的控制策略在增强拦截性能和针对多种不确定性的改进鲁棒性方面的有效性。 (C)2016 ISA。由Elsevier Ltd.出版。保留所有权利。

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