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Parametric eigenstructure assignment using state-derivative feedback for linear systems

机译:使用状态导数反馈的线性系统参数本征结构分配

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摘要

This paper addresses a complete parametric approach for solving the eigenstructure assignment problem using state-derivative feedback for multivariable linear systems. In the present work, both linear control systems with nonsingular and singular open-loop state matrices are treated and the corresponding parametric expressions to the feedback gains are derived. The parametric expressions for gains describe the available degrees-of-freedom offered by the state-derivative feedback in selecting the associated eigenvectors from an admissible class. These freedoms are utilized to improve robustness of the closed-loop system. Accordingly, the sensitivity of the assigned eigenvalues to perturbations in the system and gain matrices is minimized. Finally, a vibration absorber system is introduced to demonstrate the effectiveness of the proposed solution.
机译:本文针对状态变量反馈,针对多变量线性系统解决了本征结构分配问题的完整参数方法。在本工作中,处理具有非奇异和奇异开环状态矩阵的线性控制系统,并推导反馈增益的相应参数表达式。增益的参数表达式描述了在从可允许的类别中选择关联的特征向量时,状态导数反馈提供的可用自由度。利用这些自由度来提高闭环系统的鲁棒性。因此,分配的特征值对系统中的扰动和增益矩阵的敏感性最小。最后,介绍了一种减振系统,以证明所提出解决方案的有效性。

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