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Overcoming passivity violations: closed-loop stability, controller design and controller scheduling

机译:克服无源性违规:闭环稳定性,控制器设计和控制器调度

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Control of systems that have had their passive input-output map partially violated is the motivation of this study. The hybrid passivity/finite-gain systems framework is specifically well suited to systems that have experienced a passivity violation. The focus of this study is the extension and application of the hybrid passivity/finite-gain systems framework to a multi-input multi-output (MIMO) control problem. Calculation of the hybrid passivity/finite-gain parameters in a linear time-invariant (LTI) MIMO context is considered. Additionally, we show that a set of hybrid very strictly passive/finite-gain (VSP/finite-gain) controllers gain-scheduled in a particular way also possesses hybrid VSP/finite-gain properties. To synthesise hybrid VSP/finite-gain controllers a frequency-weighted optimal control scheme is used to parameterise controllers that are then constrained and optimised within a numerical optimisation framework. The theoretical contributions of this work are validated experimentally using a two-link flexible manipulator apparatus. Results highlight the utility of the hybrid passivity/finite-gain framework, the scheduling scheme and controller design method.
机译:本研究的动机是控制已经部分违反其被动输入-输出图的系统。混合无源/有限增益系统框架特别适合于遇到无源性违例的系统。这项研究的重点是将混合无源/有限增益系统框架扩展和应用到多输入多输出(MIMO)控制问题中。考虑了在线性时不变(LTI)MIMO上下文中混合无源/有限增益参数的计算。此外,我们显示了以特定方式进行增益调度的一组混合非常严格的被动/有限增益(VSP /有限增益)控制器也具有混合VSP /有限增益特性。为了综合混合VSP /有限增益控制器,使用了频率加权最优控制方案来对控制器进行参数化,然后在数值优化框架内对其进行约束和优化。这项工作的理论贡献是通过使用两连杆柔性机械手装置进行实验验证的。结果突出了混合被动/有限增益框架,调度方案和控制器设计方法的实用性。

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