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Robust finite non-singular terminal synergetic control for second order nonlinear systems subject to time-varying mismatched disturbances

机译:用于二阶非线性系统的强大有限非单数终端协同控制,但经过多变的不匹配干扰

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This paper proposes a novel robust finite synergetic control approach for nonlinear systems subject to time-varying mismatched disturbances. Its main objective is to guarantee the finite-time convergence of the states while eliminating the singularity problem and providing a chattering-free response despite the disturbances. The controller is formulated based on a novel non-singular terminal sliding manifold and the disturbances are estimated using a nonlinear finite time disturbance observer. By estimating the values of the mismatched disturbances and uncertainties, a novel synergetic manifold is introduced which compensates for an estimate of the disturbances. This yields a robust Finite Non-singular Terminal Synergistic Control (FNTSC) that is capable of counteracting the effects of the time-varying mismatched disturbances. System stability is established using the Lyapunov stability theory. The effectiveness and performance of the proposed approach is assessed using a four-bar linkage mechanism as a study case. The obtained results confirmed the robustness, finite time convergence and chattering free dynamics of the proposed controller.
机译:本文提出了一种用于非线性系统的新型稳健有限协同控制方法,其经过不同的不匹配干扰。其主要目标是保证各国的有限时间融合,同时消除了奇点问题,尽管有干扰,但仍提供喋喋不休。控制器基于新颖的非单数末端滑动歧管,并且使用非线性有限时间干扰观测器估计干扰。通过估计不匹配的扰动和不确定性的值,引入了一种新的协同歧管,其补偿了扰动的估计。这产生了稳健的有限非奇异终端协同控制(FNTSC),其能够抵消时变不匹配的扰动的影响。使用Lyapunov稳定性理论建立系统稳定性。使用四条键合理作为研究案例评估所提出的方法的有效性和性能。所获得的结果证实了所提出的控制器的鲁棒性,有限时间收敛和抖动自由动态。

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