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Non-minimal state variable feedback decoupling control for multivariable continuous-time systems

机译:多变量连续时间系统的非最小状态变量反馈解耦控制

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摘要

Most research into non-minimal state variable feedback control, in which the state vector is implemented directly from the measured input and output signals of the controlled process, has considered discrete-time systems represented using either the backward shift or delta operator. However, mechanistic models with physically meaningful parameters are often expressed in terms of differential equations, represented using the Laplace transform or s-operator, and this article is concerned with multivariable design for such models. The controllability conditions are developed and it is shown how the introduction of a diagonal polynomial matrix for filtering yields a control system that is immediately realisable in practice. Worked examples include optimal control with multi-objective optimisation and pole assignment design with analytical multivariable decoupling, with the latter illustrated by its application to a nonlinear wind turbine simulation.
机译:对于非最小状态变量反馈控制的大多数研究(其中直接从受控过程的测量输入和输出信号实现状态矢量)都考虑了使用后向移位或增量算子表示的离散时间系统。但是,具有物理上有意义的参数的机械模型通常用微分方程表示,用拉普拉斯变换或s运算符表示,并且本文涉及此类模型的多变量设计。研究了可控性条件,并显示了引入对角多项式矩阵进行滤波如何产生可在实践中立即实现的控制系统。工作示例包括具有多目标优化的最优控制和具有分析性多变量解耦的极点分配设计,后者通过其在非线性风力涡轮机仿真中的应用得以说明。

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