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Observer-based improved Composite Nonlinear Feedback control for output tracking of time-varying references in descriptor systems with actuator saturation

机译:基于观察者的改进的复合非线性反馈控制,用于输出跟踪具有执行器饱和的描述符系统中的时变电片的输出跟踪

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摘要

In this paper, an observer-based improved Composite Nonlinear Feedback (CNF) controller is proposed for output tracking of general time-varying reference signals in descriptor systems subject to actuator saturation. Different parts of the proposed control law are designed based on the reconstructed states by a full-order descriptor observer. Algebraic constraints in descriptor systems can significantly complicate design procedures of the observer and the controller. Moreover, considering the actuator saturation constraint, adds additional complexity to the tracking problem. On the other hand, the proposed improved CNF controller's performance is also challenged in presence of external disturbances. The effect of external disturbances, along with the previous mentioned constraints, needs extremely intricate calculations for investigating the solvability of the tracking problem. Furthermore, due to the nonlinearity of the closed-loop system, steady-state analysis is also needed to show the uniformly ultimately boundedness of the tracking error in presence of external disturbances. In this regard, precise mathematical operations are performed through a theorem, which investigates the tracking goal for three different cases of the saturation function. Finally, the theoretical achievements are verified by computer simulations through numerical and practical examples. (C) 2019 ISA. Published by Elsevier Ltd. All rights reserved.
机译:在本文中,提出了一种基于观察者的改进的复合非线性反馈(CNF)控制器,用于输出致动器饱和度的描述符系统中的一般时变参考信号的跟踪。所提出的控制法的不同部分是通过全阶描述符观察者基于重建状态来设计的。描述符系统中的代数约束可以显着复杂化观察者和控制器的设计过程。此外,考虑到致动器饱和约束,对跟踪问题增加了额外的复杂性。另一方面,在存在外部干扰的情况下,建议的改进的CNF控制器的性能也受到挑战。外部扰动以及前面提到的约束的影响需要极其复杂的计算来研究跟踪问题的可解性。此外,由于闭环系统的非线性,还需要稳态分析来显示在外部干扰存在下跟踪误差的均匀最终界定。在这方面,通过定理执行精确的数学操作,该定理研究了针对饱和函数的三种不同情况的跟踪目标。最后,通过数值和实际示例通过计算机仿真验证了理论成果。 (c)2019 ISA。 elsevier有限公司出版。保留所有权利。

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