Inverse-based methods to minimum-energy MV control for nonsquare state-space systems

W. Hunek, J. Korniak
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Abstract

The paper presents an approach to the synthesis of MV control systems with respect to minimum-energy of the control inputs. Due to the reason, a recently introduced polynomial matrix σ-inverse is applied to LTI nonsquare systems described by discrete-time state-space framework. It is shown that classical minimum-norm right inverse is not sufficient to obtain the minimum-energy of control runs. Thus, the σ-inverse with parameter/polynomial, so-called degrees of freedom, gives better results than typical Moore-Penrose inverse in terms of said lower energy. The effectiveness of the presented method is confirmed by simulation examples in Matlab environment.
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基于逆的非平方状态空间系统最小能量中压控制方法
本文提出了一种基于控制输入能量最小的中频控制系统综合方法。为此,将最近引入的多项式矩阵σ-逆应用于离散时间状态空间框架描述的LTI非平方系统。结果表明,经典的最小范数右逆并不足以得到控制运行的最小能量。因此,具有参数/多项式的σ-逆,即所谓的自由度,在较低能量方面比典型的Moore-Penrose逆给出了更好的结果。通过Matlab环境下的仿真算例验证了该方法的有效性。
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