Robust Data-Driven Tube-Based Zonotopic Predictive Control with Closed-Loop Guarantees
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arXiv
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| Main Authors: | , , , , |
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| Format: | Preprint |
| Published: |
2024
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| _version_ | 1866915496274690048 |
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| author | Farjadnia, Mahsa Fontan, Angela Alanwar, Amr Molinari, Marco Johansson, Karl Henrik |
| author_facet | Farjadnia, Mahsa Fontan, Angela Alanwar, Amr Molinari, Marco Johansson, Karl Henrik |
| contents | This work proposes a robust data-driven tube-based zonotopic predictive control (TZPC) approach for discrete-time linear systems, designed to ensure stability and recursive feasibility in the presence of bounded noise. The proposed approach consists of two phases. In an initial learning phase, we provide an over-approximation of all models consistent with past input and noisy state data using zonotope properties. Subsequently, in a control phase, we formulate an optimization problem, which by integrating terminal ingredients is proven to be recursively feasible. Moreover, we prove that implementing this data-driven predictive control approach guarantees robust exponential stability of the closed-loop system. The effectiveness and competitive performance of the proposed control strategy, compared to recent data-driven predictive control methods, are illustrated through numerical simulations. |
| format | Preprint |
| id |
arxiv_https___arxiv_org_abs_2409_14366 |
| institution | arXiv |
| publishDate | 2024 |
| record_format | arxiv |
| spellingShingle | Robust Data-Driven Tube-Based Zonotopic Predictive Control with Closed-Loop Guarantees Farjadnia, Mahsa Fontan, Angela Alanwar, Amr Molinari, Marco Johansson, Karl Henrik Systems and Control This work proposes a robust data-driven tube-based zonotopic predictive control (TZPC) approach for discrete-time linear systems, designed to ensure stability and recursive feasibility in the presence of bounded noise. The proposed approach consists of two phases. In an initial learning phase, we provide an over-approximation of all models consistent with past input and noisy state data using zonotope properties. Subsequently, in a control phase, we formulate an optimization problem, which by integrating terminal ingredients is proven to be recursively feasible. Moreover, we prove that implementing this data-driven predictive control approach guarantees robust exponential stability of the closed-loop system. The effectiveness and competitive performance of the proposed control strategy, compared to recent data-driven predictive control methods, are illustrated through numerical simulations. |
| title | Robust Data-Driven Tube-Based Zonotopic Predictive Control with Closed-Loop Guarantees |
| topic | Systems and Control |
| url | https://arxiv.org/abs/2409.14366 |