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A Dynamic Power Management Strategy for Cascaded Multilevel Converter With Hybrid Energy Storage System
Author(s) -
Yang Zhang,
Kamil Swiderski,
Qianwen Xu
Publication year - 2025
Publication title -
ieee transactions on industrial electronics
Language(s) - English
Resource type - Magazines
SCImago Journal Rank - 2.393
H-Index - 287
eISSN - 1557-9948
pISSN - 0278-0046
DOI - 10.1109/tie.2025.3579091
Subject(s) - power, energy and industry applications , signal processing and analysis , communication, networking and broadcast technologies
A cascaded multilevel converter (CMC) with hybrid energy storage system (HESS) offers a promising solution for high-voltage and high-power hybrid dc–ac systems. However, asymmetric power distribution (APD) across different energy storage systems (ESSs) presents a challenge. This article proposes a dynamic power management strategy for CMC-based HESS, featuring dynamic power sharing to optimize power allocation between batteries and supercapacitors (SCs) based on their distinct response times. In addition, battery state-of-charge (SOC) balancing and SC energy management strategies are introduced to maintain optimal energy distribution and ensure long-term operation. The approach enhances overall system performance by fully leveraging the complementary strengths of batteries and SCs. The effectiveness of this strategy is validated through simulations and experiments, confirming its scalability and adaptability to various CMC-based HESS configurations.

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