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Hauptverfasser: Borja-Conde, Jose A., Nadales, Juan M., Fele, Filiberto, Limon, Daniel
Format: Preprint
Veröffentlicht: 2025
Schlagworte:
Online-Zugang:https://arxiv.org/abs/2501.08181
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author Borja-Conde, Jose A.
Nadales, Juan M.
Fele, Filiberto
Limon, Daniel
author_facet Borja-Conde, Jose A.
Nadales, Juan M.
Fele, Filiberto
Limon, Daniel
contents Periodic dynamical systems, distinguished by their repetitive behavior over time, are prevalent across various engineering disciplines. In numerous applications, particularly within industrial contexts, the implementation of model predictive control (MPC) schemes tailored to optimize specific economic criteria was shown to offer substantial advantages. However, the real-time implementation of these schemes is often infeasible due to limited computational resources. To tackle this problem, we propose a resource-efficient economic model predictive control scheme for periodic systems, leveraging existing single-layer MPC techniques. Our method relies on a single quadratic optimization problem, which ensures high computational efficiency for real-time control in dynamic settings. We prove feasibility, stability and convergence to optimum of the proposed approach, and validate the effectiveness through numerical experiments.
format Preprint
id arxiv_https___arxiv_org_abs_2501_08181
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Economic Model Predictive Control for Periodic Operation: A Quadratic Programming Approach
Borja-Conde, Jose A.
Nadales, Juan M.
Fele, Filiberto
Limon, Daniel
Systems and Control
Optimization and Control
Periodic dynamical systems, distinguished by their repetitive behavior over time, are prevalent across various engineering disciplines. In numerous applications, particularly within industrial contexts, the implementation of model predictive control (MPC) schemes tailored to optimize specific economic criteria was shown to offer substantial advantages. However, the real-time implementation of these schemes is often infeasible due to limited computational resources. To tackle this problem, we propose a resource-efficient economic model predictive control scheme for periodic systems, leveraging existing single-layer MPC techniques. Our method relies on a single quadratic optimization problem, which ensures high computational efficiency for real-time control in dynamic settings. We prove feasibility, stability and convergence to optimum of the proposed approach, and validate the effectiveness through numerical experiments.
title Economic Model Predictive Control for Periodic Operation: A Quadratic Programming Approach
topic Systems and Control
Optimization and Control
url https://arxiv.org/abs/2501.08181