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首页> 外文期刊>International Journal of Control, Automation, and Systems >Adaptive Robust H-infinity Sliding Mode Control for Singular Systems with Time-varying Delay and Uncertain Derivative Matrix
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Adaptive Robust H-infinity Sliding Mode Control for Singular Systems with Time-varying Delay and Uncertain Derivative Matrix

机译:具有时变延迟和不确定衍生矩阵的奇异系统的自适应鲁棒H-Infinity滑动模式控制

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This paper considers the problem of sliding mode control (SMC) design for a class of nonlinear singular systems with time-varying delay and uncertainties, especially with uncertainties in the derivative matrix. By taking uncertainties of the derivative matrix into account, the state augmentation transformation is constructed such that uncertainties of the derivative matrix are eliminated. Then an appropriate integral-type sliding surface function is designed. And the resulting sliding mode dynamics is an uncertain singular time-varying delay system. A delay-dependent sufficient condition which guarantees the sliding mode dynamics to be admissible with H-infinity performance is established. A new version of stabilization solvability condition is then proposed in terms of linear matrix inequality (LMI), which determines the undetermined parameter K in both the sliding surface function and the SMC laws. Moreover, two distinctive controllers (i.e., an SMC law and an adaptive SMC law) are synthesized such that the finite-time reachability of the predesigned sliding surface can be ensured. Finally, simulation examples are given to demonstrate the effectiveness and the merits of the proposed theory.
机译:本文考虑了具有时变延迟和不确定性的一类非线性奇异系统的滑模控制(SMC)设计的问题,特别是在衍生物基质中的不确定性。通过考虑衍生矩阵的不确定性,构建了状态增强变换,使得消除了衍生物基质的不确定性。然后设计了适当的整体式滑动表面功能。所得到的滑动模式动态是不确定的奇异时变延迟系统。建立了延迟相关的充足条件,确保了对H-Infinity性能可允许的滑动模式动态进行。然后根据线性矩阵不等式(LMI)提出了一种新的稳定可溶性条件,其在滑动表面功能和SMC定律中确定未确定的参数k。此外,合成了两个独特的控制器(即,SMC法律和自适应SMC定律),使得可以确保预测的滑动表面的有限时间可达性。最后,给出了仿真实例来证明所提出的理论的有效性和优点。

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