Decentralized Control for Heterogeneous Battery Energy Storage System

Fuente: arXiv
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Autori principali: Hakuta, Yusuke, Amano, Yasushi, Jimbo, Tomohiko, Tomura, Shuji
Natura: Preprint
Pubblicazione: 2024
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author Hakuta, Yusuke
Amano, Yasushi
Jimbo, Tomohiko
Tomura, Shuji
author_facet Hakuta, Yusuke
Amano, Yasushi
Jimbo, Tomohiko
Tomura, Shuji
contents Battery energy storage systems (BESSs) are essential for stable power supply in renewable energy systems that can operate in all weather. Future BESSs will be massive and pluggable with several heterogeneous batteries. In this paper, a novel decentralized control method for a heterogeneous BESS is proposed, in which each battery autonomously operates based on its characteristics. First, a control method that uses only one broadcast signal for each type of battery is proposed. Second, the asymptotic stability of the tracking error is proved. Third, numerical simulations confirm that the proposed control method has robust tracking performance of the total electric power to the demanded power when some batteries fail and are detached from the system. Last, in order to suppress degradation of battery, equalization of the state of charge is achieved for each type of battery without communication among the batteries.
format Preprint
id arxiv_https___arxiv_org_abs_2404_10439
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Decentralized Control for Heterogeneous Battery Energy Storage System
Hakuta, Yusuke
Amano, Yasushi
Jimbo, Tomohiko
Tomura, Shuji
Systems and Control
Battery energy storage systems (BESSs) are essential for stable power supply in renewable energy systems that can operate in all weather. Future BESSs will be massive and pluggable with several heterogeneous batteries. In this paper, a novel decentralized control method for a heterogeneous BESS is proposed, in which each battery autonomously operates based on its characteristics. First, a control method that uses only one broadcast signal for each type of battery is proposed. Second, the asymptotic stability of the tracking error is proved. Third, numerical simulations confirm that the proposed control method has robust tracking performance of the total electric power to the demanded power when some batteries fail and are detached from the system. Last, in order to suppress degradation of battery, equalization of the state of charge is achieved for each type of battery without communication among the batteries.
title Decentralized Control for Heterogeneous Battery Energy Storage System
topic Systems and Control
url https://arxiv.org/abs/2404.10439