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基于三角形连接级联H桥变换器的梯次利用电池储能系统SoC均衡双级MPC控制

Dual-Stage MPC for SoC Balancing in Second-Life Battery Energy Storage Systems Based on Delta-Connected Cascaded H-Bridge Converters

语言:

中文摘要

利用梯次利用电池(SLBs)构建储能系统具有显著的经济与环保价值。级联H桥(CHB)变换器因其高效率和低成本,成为将SLBs接入电网的理想选择。针对SLBs容量不一致导致的功率分配不均问题,本文提出了一种双级模型预测控制(MPC)策略,有效实现了各子模块间的荷电状态(SoC)均衡。

English Abstract

Using second-life batteries (SLBs) to build battery energy storage systems (BESSs) yields substantial environmental and economic benefits. The cascaded H-Bridge (CHB) converter has emerged as an attractive candidate to integrate SLBs into the electrical grid, allowing the unbalanced power distribution among its sub-modules (SMs) with high efficiency and a low estimated cost. However, capacity diff...
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SunView 深度解读

该技术对阳光电源的PowerTitan和PowerStack系列大型储能系统具有重要参考价值。随着储能市场对梯次利用电池应用需求的增加,电池组间的不一致性管理成为核心痛点。级联H桥拓扑结合MPC控制策略,能够实现更精细的功率分配和SoC均衡,从而延长电池系统寿命并提升整体利用率。建议研发团队关注该双级MPC算法在模块化储能PCS中的工程化应用,以优化大容量储能系统的运维效率,提升在复杂电网环境下的控制精度。