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An approach to multidimensional Fornasini-Marchesini state-space model realization w.r.t. columns of transfer matrices

机译:一种多维福纳尼尼 - Marchesini状态空间模型实现的方法W.R.T. 传输矩阵列

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This paper proposes a new approach that can generate a low-order Fornasini-Marchesini (F-M) model realization for a given n-D system by taking into account the column structural properties of its transfer matrix. Specifically, a new necessary and sufficient realization condition is developed for the F-M model realization based on a resolvent invariant space associated with the Gleason's problem specified by the given n-D transfer matrix. Then, a new constructive procedure with respect to the columns of a given transfer matrix is proposed for constructing a low-order F-M model realization. In order to apply this procedure to the multiple-input multiple-output case more effectively, an improved realization procedure based on a polynomial description is also proposed. It will be shown, by both algorithmic analysis and illustrative examples, that for a transfer matrix having more rows than columns the proposed realization approach may generate a much lower realization order than the existing one with respect to the rows of a given n-D transfer matrix recently developed by Cheng et al. Particularly, for a given scalar transfer function, our new approach always generates an F-M model realization with lower order than the existing methods. (C) 2018 Elsevier B.V. All rights reserved.
机译:本文提出了一种新的方法,可以通过考虑其传输矩阵的柱结构特性来为给定的N-D系统产生低阶FORNASINI-MARCHESINI(F-M)模型实现。具体地,基于与由给定的N-D传输矩阵指定的Gleason的问题相关联的解析不变空间,为F-M模型实现开发了新的必要和充分的实现条件。然后,提出了关于给定传送矩阵的列的新的建设性过程,用于构建低阶F-M模型实现。为了更有效地将该过程应用于多输入多输出案例,还提出了一种改进的基于多项式描述的实现过程。通过算法分析和说明性示例,对于具有多于列的传输矩阵的传送矩阵,所提出的实现方法可以生成比相对于给定ND传输矩阵的行的现有的实现更低的实现顺序由Cheng等人开发。特别是,对于给定的标量传递函数,我们的新方法始终以比现有方法较低的顺序产生F-M模型实现。 (c)2018 Elsevier B.v.保留所有权利。

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