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Minimal realisation of bilinear and quadratic input-output difference equations in state-space form

机译:状态空间形式的双线性和二次输入-输出差分方程的最小实现

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This article studies the realisability property of discrete-time bilinear and quadratic input-output (i/o) equations in the classical state-space form. Constraints on the parameters of the i/o model are suggested that lead to realisable models. Using new formulae for computing basis vectors of certain vector spaces of differential one-forms, we present in this article the complete list of the third- and fourth-order realisable i/o bilinear models, and a new realisable subclass of an arbitrary order is suggested. Moreover, we provide the sufficient conditions of the second- and third-order realisable i/o quadratic models, respectively. All the developed theory and algorithms are illustrated by means of several examples.
机译:本文研究经典状态空间形式的离散时间双线性和二次输入-输出(i / o)方程的可实现性。建议对I / O模型的参数进行约束,以实现可实现的模型。使用新的公式来计算微分一形式的某些向量空间的基向量,我们在本文中提供了三阶和四阶可实现的i / o双线性模型的完整列表,而任意阶的新可实现子类是建议。此外,我们分别提供了二阶和三阶可实现的I / O二次模型的充分条件。通过几个示例说明了所有已开发的理论和算法。

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