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首页> 外文期刊>European Journal of Control >Eigenvalue assignment enabled control law for multivariable nonlinear Systems with mismatched uncertainties
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Eigenvalue assignment enabled control law for multivariable nonlinear Systems with mismatched uncertainties

机译:具有不匹配的不确定性的多变量非线性系统的特征值作业使控制法

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This paper presents an adaptive filtering output feedback control architecture for multivariable nonlinear systems with mismatched uncertainties enabled by an eigenvalue assignment method. A piecewise con-stant adaptive law updates the adaptive parameters which represent the uncertainty estimates by solving the error dynamics between the output predictor and the real system with the neglection of unknowns. By employing a computationally efficient eigenvalue assignment method, the multivariable nonlinear system is transformed into Frobenius canonical form. A novel filtering control law which allows the desired system to be nonminimum-phase and does not require dynamic inversion of the desired system is designed to compensate the nonlinear uncertainties and track a given trajectory, following a performance determined by the eigenvalues assigned to the controller. The uniform performance bounds are derived for the system state and control input as compared to the corresponding signals of a bounded virtual reference system, which defines the best performance that can be achieved by the closed-loop system. Numerical examples are provided to illustrate the effectiveness of the eigenvalue assignment enabled control law, comparisons between the proposed controller and funnel controller are carried out. Published by Elsevier Ltd on behalf of European Control Association.
机译:本文介绍了一种自适应滤波输出反馈控制架构,用于多变量非线性系统,由特征值分配方法启用了不匹配的不确定性。分段截然型自适应法更新自适应参数,通过求解输出预测器和实际系统之间的误差动态来更新代表不确定性估计,以忽略未知数。通过采用计算上有效的特征值分配方法,多变量非线性系统被转换为Frobenius规范形式。一种新的过滤控制定律,允许所需的系统是非最小相位的,并且不需要所需系统的动态反转,以补偿非线性的不确定性并跟踪由分配给控制器的特征值的性能之后的特定轨迹。与有界虚拟参考系统的相应信号相比,可以为系统状态和控制输入导出均匀性能界限,该界限虚拟参考系统的相应信号定义了可以通过闭环系统实现的最佳性能。提供了数值示例以说明所支持的控制法的特征值分配的有效性,执行所提出的控制器和漏斗控制器之间的比较。 elsevier有限公司代表欧洲控制协会发布。

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