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Design of a globally stable direct adaptive VSS regulator for multivariable nonminimum-phase systems based on the doubly coprime factorization

机译:基于双互质数分解的全局稳定直接自适应VSS调节器设计

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An adaptive regulator problem for continuous-time multivariable nonminimum-phase systems of unknown order is considered using the idea of the sliding mode control method. Introducing the augmented state variable filters of an input, an output and an auxiliary input and taking an advantage of the doubly coprime factorization associated with the system transfer matrix, an adaptive state feedback control scheme is proposed that drives these augmented state variables to the subspace defined by the intersection of the two sliding hyperplanes on which the state variables decay to the origin exponentially quickly. The global asymptotic stability of the proposed adaptive regulator is established under the assumption that the upper bound of the controllability index is known.
机译:利用滑模控制方法的思想,考虑了未知阶连续时间多变量非最小相位系统的自适应调节器问题。引入输入,输出和辅助输入的增强状态变量滤波器,并利用与系统传递矩阵关联的双重互质分解的优势,提出了一种自适应状态反馈控制方案,该方案将这些增强状态变量驱动到定义的子空间通过两个滑动超平面的交点,状态变量在其上迅速地以指数形式衰减到原点。所提出的自适应调节器的全局渐近稳定性是在可控性指标的上限已知的前提下建立的。

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