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Self-adjusting leakage type adaptive robust control design for uncertain systems with unknown bound

机译:具有未知界的不确定系统的自调整泄漏型自适应鲁棒控制设计

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The control problem for an uncertain mechanical system is addressed. The mechanical system under consideration, which is to follow a class of prescribed constraints, contains (possibly fast) time-varying uncertainty. The uncertainty is bounded, but the bound is not necessarily known. A new class of robust control schemes is proposed, which is based on on-line adaptation of a design parameter. Two categories of adaptation laws, both are based on self-adjusting leakage, are proposed. The control guarantees uniform boundedness and uniform ultimate boundedness of a performance measure. Comparing with the previous control scheme, the importance of this new control is that it can compensate the uncertainty in a very effective way. It also avoids over compensation and renders modest control effort. For demonstration purpose, the Toda Lattice, an ideal model of mechanical system with asymmetrical behaviour is chosen. The energy control of the Toda Lattice demonstrates the validity and reliability of control schemes and adaptation laws. (C) 2018 Elsevier Ltd. All rights reserved.
机译:解决了不确定机械系统的控制问题。所考虑的机械系统遵循一类规定的约束条件,其中包含(可能很快)随时间变化的不确定性。不确定性是有界的,但界限不一定是已知的。提出了一种基于设计参数在线自适应的新型鲁棒控制方案。提出了两类自适应律,均基于自调节泄漏。该控件保证了性能度量的统一边界和统一最终边界。与以前的控制方案相比,此新控制的重要性在于它可以以非常有效的方式补偿不确定性。它还避免了过度补偿,并进行了适度的控制。出于演示目的,选择了具有不对称行为的理想机械系统模型Toda Lattice。 Toda Lattice的能量控制证明了控制方案和适应律的有效性和可靠性。 (C)2018 Elsevier Ltd.保留所有权利。

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