Optimization of Linear Parameterizable ℋ∞ Controllers in the Frequency Domain

E. Solingen, J. V. Wingerden, R. Breuker, M. Verhaegen
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引用次数: 4

Abstract

Abstract In this paper a novel approach for ℋ ∞ controller design for linear parameterizable controllers is presented. The approach uses the generalized Nyquist stability criterion to find the parameters of linear parameterized controllers for Multi-Input Multi-Output (MIMO) systems. The main advantage of the proposed approach is that the generalized plant does not have to be diagonally dominant and that there is no need for a desired open-loop response function. By constraining the Nyquist curve from certain parts in the frequency domain, controller parameters that guarantee stability and performance of the closed-loop system can be found. The method is successfully applied to two cases involving a double-mass-spring-damper system. In the first case only controller parameters are optimized and in the second case both structural and controller parameters are optimized.
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线性可参数化h∞控制器的频域优化
摘要针对线性可参数控制器,提出了一种新的h∞控制器设计方法。该方法利用广义Nyquist稳定性判据求解多输入多输出(MIMO)系统的线性参数化控制器参数。所提出的方法的主要优点是,广义对象不必是对角占优的,也不需要期望的开环响应函数。通过在频域中对奈奎斯特曲线的某些部分进行约束,可以找到保证闭环系统稳定性和性能的控制器参数。该方法成功地应用于两个涉及双质量-弹簧-阻尼器系统的实例。在第一种情况下,仅优化控制器参数,在第二种情况下,优化结构和控制器参数。
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