A New Non-Full Rank Algorithm for the IMC-Derived d-Step MIMO Structures in the Pole-Free State Space

In this paper, the powerful issue of a non-full rank inverse model control investigation is provided. It is broadly known, that the inverse-based methodology is associated with the full-rank control systems only. However, following the recently obtained authors' results in this matter, it shoul...

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Main Authors: Tomasz Feliks, Wojciech Przemyslaw Hunek
Format: Article
Language:English
Published: IEEE 2020-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9133051/
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spelling doaj-1aadefc95fd3444c8d169d5c009d9b5f2021-03-30T01:59:29ZengIEEEIEEE Access2169-35362020-01-01812135712136510.1109/ACCESS.2020.30068069133051A New Non-Full Rank Algorithm for the IMC-Derived d-Step MIMO Structures in the Pole-Free State SpaceTomasz Feliks0https://orcid.org/0000-0002-0691-1011Wojciech Przemyslaw Hunek1https://orcid.org/0000-0002-8210-9776Institute of Control Engineering, Opole University of Technology, Opole, PolandInstitute of Control Engineering, Opole University of Technology, Opole, PolandIn this paper, the powerful issue of a non-full rank inverse model control investigation is provided. It is broadly known, that the inverse-based methodology is associated with the full-rank control systems only. However, following the recently obtained authors' results in this matter, it should be concluded, that for single-delayed non-full rank state-space plants, the inverse model control-related perfect control expression can also be established. It is shown here, that for all right- and left-oriented multivariable LTI non-full rank systems, including the square ones, governed by the discrete-time state-space domain arranging the zero-reference value, the maximum-speed pole-free instance of such inverse model control strategy can be achieved. Thus, the new non-full rank algorithm does not coincide with the z-transfer-function scenario, which additionally sounds the intriguing peculiarity. The innovative content of the manuscript, that has never been seen before, is strongly supported by the numerical examples. Henceforth, the presented methodology covers the entire set of LTI MIMO state-space-oriented plants in the discrete-time domain, which is also a consequence of conducted research investigation in the past.https://ieeexplore.ieee.org/document/9133051/Non-full rankperfect control procedureMoore–Penrose inversegeneralized inversesskeleton factorizationpole-free delayed plants
collection DOAJ
language English
format Article
sources DOAJ
author Tomasz Feliks
Wojciech Przemyslaw Hunek
spellingShingle Tomasz Feliks
Wojciech Przemyslaw Hunek
A New Non-Full Rank Algorithm for the IMC-Derived d-Step MIMO Structures in the Pole-Free State Space
IEEE Access
Non-full rank
perfect control procedure
Moore–Penrose inverse
generalized inverses
skeleton factorization
pole-free delayed plants
author_facet Tomasz Feliks
Wojciech Przemyslaw Hunek
author_sort Tomasz Feliks
title A New Non-Full Rank Algorithm for the IMC-Derived d-Step MIMO Structures in the Pole-Free State Space
title_short A New Non-Full Rank Algorithm for the IMC-Derived d-Step MIMO Structures in the Pole-Free State Space
title_full A New Non-Full Rank Algorithm for the IMC-Derived d-Step MIMO Structures in the Pole-Free State Space
title_fullStr A New Non-Full Rank Algorithm for the IMC-Derived d-Step MIMO Structures in the Pole-Free State Space
title_full_unstemmed A New Non-Full Rank Algorithm for the IMC-Derived d-Step MIMO Structures in the Pole-Free State Space
title_sort new non-full rank algorithm for the imc-derived d-step mimo structures in the pole-free state space
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2020-01-01
description In this paper, the powerful issue of a non-full rank inverse model control investigation is provided. It is broadly known, that the inverse-based methodology is associated with the full-rank control systems only. However, following the recently obtained authors' results in this matter, it should be concluded, that for single-delayed non-full rank state-space plants, the inverse model control-related perfect control expression can also be established. It is shown here, that for all right- and left-oriented multivariable LTI non-full rank systems, including the square ones, governed by the discrete-time state-space domain arranging the zero-reference value, the maximum-speed pole-free instance of such inverse model control strategy can be achieved. Thus, the new non-full rank algorithm does not coincide with the z-transfer-function scenario, which additionally sounds the intriguing peculiarity. The innovative content of the manuscript, that has never been seen before, is strongly supported by the numerical examples. Henceforth, the presented methodology covers the entire set of LTI MIMO state-space-oriented plants in the discrete-time domain, which is also a consequence of conducted research investigation in the past.
topic Non-full rank
perfect control procedure
Moore–Penrose inverse
generalized inverses
skeleton factorization
pole-free delayed plants
url https://ieeexplore.ieee.org/document/9133051/
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