具有有界匹配扰动的中立奇异不确定系统的无源滑模控制

S. Farooq, Abdul Qayyum Khan, M. Abid, A. A. Khattak
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引用次数: 2

摘要

本文提出了一类具有时变时滞的不确定奇异中立型时滞系统的滑模控制方法。考虑奇异矩阵,选择了一种积分型滑动流形。利用线性矩阵不等式导出了滑模动力学鲁棒无源性的时滞相关充分条件。假设系统参数具有不匹配的范数有界不确定性和匹配的有界外部扰动和未建模的动力学不确定性。考虑了脉冲解的正则化和去除。解决了不稳定系统的反馈钝化问题,合成了具有记忆的鲁棒控制器,保证了滑模动力学的无源性。建立了保证状态在有限时间内到达滑动面能力的SMC律。最后通过数值算例对所得结果进行了验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Passivity-Based Sliding Mode Control of Neutral Singular Uncertain Systems with Time Varying Delays and Bounded Matched Disturbances
In this paper, we propose the Sliding Mode Control (SMC) for a class of uncertain singular Neutral Time Delay Systems (NTDS) with time varying delays. An integral type sliding manifold is selected by considering the singular matrix. Delay dependent sufficient conditions are derived in terms of Linear Matrix Inequalities (LMIs) for robust passivity of sliding mode dynamics. The system is assumed to have unmatched norm bounded uncertainties in system parameters and matched bounded external disturbances and uncertainties due to unmodeled dynamics. The regularization and removal of impulsive solutions have been considered. The problem of feedback passification of unstable systems is solved and robust controller with memory is synthesized that ensures the passivity of sliding mode dynamics. An SMC law is established that guarantees the reach ability of states to sliding surface in a finite time. The derived results are validated by a numerical example at the end.
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