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Passivity-based sliding mode predictive control of discrete-time singular systems with time-varying delay

机译:时滞离散离散奇异系统的基于无源滑模预测控制

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By introducing sliding mode predictive control (SMPC) techniques, a controller with passivity of a class of discrete-time uncertain singular systems is proposed in this paper. A new switching surface function is designed by taking the singular matrix into account, thus the resulting sliding mode dynamics is a full-order uncertain singular time-varying delay system. Due to feedback correction and receding horizon optimization, the influence of uncertainty can be compensated in time, strong robustness to matched or unmatched uncertainties is possessed.
机译:通过引入滑模预测控制(SMPC)技术,提出了一种具有无源离散时间不确定奇异系统的控制器。通过考虑奇异矩阵设计了一种新的开关表面功能,因此,所产生的滑模动力学是一个全阶不确定奇异时变时滞系统。由于反馈校正和后退水平优化,可以及时补偿不确定性的影响,对匹配或不匹配的不确定性具有很强的鲁棒性。

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