储能科学与技术 ›› 2025, Vol. 14 ›› Issue (6): 2380-2382.doi: 10.19799/j.cnki.2095-4239.2025.0503

• 储能系统与工程 • 上一篇    下一篇

基于可重构电池的储能安全系统设计与机制分析

张路霞()   

  1. 濮阳职业技术学院,河南 濮阳 457000
  • 收稿日期:2025-05-25 修回日期:2025-06-05 出版日期:2025-06-28 发布日期:2025-06-27
  • 作者简介:张路霞(1975—),女,硕士,讲师,主要研究方向为机械制造,E-mail:luxia1100@163.com

Design and mechanism research of energy storage safety system based on reconfigurable battery

Luxia ZHANG()   

  1. Puyang Vocational and Technical College, Puyang 457000, Henan, China
  • Received:2025-05-25 Revised:2025-06-05 Online:2025-06-28 Published:2025-06-27

摘要:

电化学储能技术的快速发展带来了能源变革,但是储能系统的安全问题也在日益凸显,常规电池组的短板效应是储能系统安全问题的核心。可重构电池的出现可以有效解决传统储能系统安全性问题,对此针对以可重构电池为主体的储能安全系统设计理念和相应机制展开研究。文章首先阐述了可重构电池的内在应用优势以及相关产业技术研究进展,随后详细阐述了储能安全系统的机制优化。包括安全能量数字化思想和动态重组等,最后分析了储能系统故障诊断流程,进一步保证储能系统的安全性。事实证明,动态可重构电池技术可以极大地提高电池储能系统的安全性和能量效率,也为后续大规模长寿命低成本电池和储能系统的设计提供了全新的路径。

关键词: 重构, 储能安全, 系统设计, 电池簇

Abstract:

The rapid development of electrochemical energy storage technology has brought about energy convenience, but the safety issues of energy storage systems are also becoming increasingly prominent. The shortcoming effect of conventional battery packs is the core of the safety issues of energy storage systems. The emergence of reconfigurable batteries can effectively solve the safety problems of traditional energy storage systems. Therefore, research is conducted on the design concept and corresponding mechanism of energy storage safety systems based on reconfigurable batteries. The article first elaborates on the inherent application advantages of reconfigurable batteries and the research progress of related industry technologies, and then elaborates in detail on the mechanism optimization of energy storage safety systems. Including the digital concept of safe energy and dynamic restructuring, the fault diagnosis process of the energy storage system was finally analyzed to further ensure the safety of the energy storage system. It has been proven that dynamic reconfigurable battery technology can greatly improve the safety and energy efficiency of battery energy storage systems, and also provide a new path for the design of large-scale, long-life, low-cost batteries and energy storage systems in the future.

Key words: refactoring, energy storage safety, system design, battery cluster

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