Co-evolutionary control of a class of coupled mixed-feedback systems

Fuente: arXiv
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Autori principali: Venegas-Pineda, Luis Guillermo, Jardón-Kojakhmetov, Hildeberto, Cao, Ming
Natura: Preprint
Pubblicazione: 2024
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author Venegas-Pineda, Luis Guillermo
Jardón-Kojakhmetov, Hildeberto
Cao, Ming
author_facet Venegas-Pineda, Luis Guillermo
Jardón-Kojakhmetov, Hildeberto
Cao, Ming
contents Oscillatory behavior is ubiquitous in many natural and engineered systems, often emerging through self-regulating mechanisms. In this paper, we address the challenge of stabilizing a desired oscillatory pattern in a networked system where neither the internal dynamics nor the interconnections can be changed. To achieve this, we propose two distinct control strategies. The first requires the full knowledge of the system generating the desired oscillatory pattern, while the second only needs local error information. In addition, the controllers are implemented as co-evolutionary, or adaptive, rules of some edges in an extended plant-controller network. We validate our approach in several insightful scenarios, including synchronization and systems with time-varying network structures.
format Preprint
id arxiv_https___arxiv_org_abs_2410_19857
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Co-evolutionary control of a class of coupled mixed-feedback systems
Venegas-Pineda, Luis Guillermo
Jardón-Kojakhmetov, Hildeberto
Cao, Ming
Systems and Control
Dynamical Systems
Oscillatory behavior is ubiquitous in many natural and engineered systems, often emerging through self-regulating mechanisms. In this paper, we address the challenge of stabilizing a desired oscillatory pattern in a networked system where neither the internal dynamics nor the interconnections can be changed. To achieve this, we propose two distinct control strategies. The first requires the full knowledge of the system generating the desired oscillatory pattern, while the second only needs local error information. In addition, the controllers are implemented as co-evolutionary, or adaptive, rules of some edges in an extended plant-controller network. We validate our approach in several insightful scenarios, including synchronization and systems with time-varying network structures.
title Co-evolutionary control of a class of coupled mixed-feedback systems
topic Systems and Control
Dynamical Systems
url https://arxiv.org/abs/2410.19857