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电动汽车驱动 ★ 5.0

固体氧化物电解池堆塔的主动平衡:电路设计与控制策略

Active balance of a solid oxide electrolysis cell stack tower: Circuit design and control strategy

作者 Yingtian Chi · Peiyang Lia · Zexin Zhaoa · Zhipeng Yua · Ruomei Qia · Shujun Mud · Yonghua Song · Jin Lin
期刊 Applied Energy
出版日期 2025年1月
卷/期 第 399 卷
技术分类 电动汽车驱动
相关度评分 ★★★★★ 5.0 / 5.0
关键词 The active balance circuit is innovatively used to balance the SOEC stack tower.
语言:

中文摘要

摘要 固体氧化物电解池(SOEC)技术具有高效率和可逆性的特点,但在规模化过程中面临显著挑战。一种常见的规模化方法是将多个电堆堆叠形成堆塔结构,以提高电压并降低电力转换器损耗。然而,随着电堆数量的增加,确保堆塔内部均匀性变得愈发困难。气体分布不均和电阻不一致等问题可能引发局部热点和反应物匮乏,从而加速性能衰退,凸显了对在线平衡方法的迫切需求。受电池系统中主动平衡技术的启发,本研究引入了一种主动平衡电路以增强SOEC堆塔的均匀性。针对该电路设计了电流跟踪控制器,实现对串联连接电堆的独立电流调控,Simulink仿真结果显示其对参考电流信号的响应时间在0.2秒以内。提出了一种电压平衡策略,用于生成该控制器的参考电流信号,并通过多物理场堆塔模型进行了实施与验证。结果表明,在存在气体分布不均和电阻不一致的情况下,该平衡策略有效降低了超过10°C的温度不均匀性,突显了主动平衡电路在提升SOEC技术耐久性方面的潜力。

English Abstract

Abstract Solid oxide electrolysis cell (SOEC) technology is characterized by high efficiency and reversibility, yet it encounters significant challenges in scaling up. A common approach to scaling up involves piling up multiple stacks to form a stack tower, which increases voltage and reduces power converter loss. However, as the number of stacks increases, ensuring homogeneity within the stack tower becomes increasingly challenging. Issues such as gas maldistribution and resistance inconsistency can accelerate degradation by inducing local hotspots and reactant starvation, highlighting the urgent need for online balance methods. Inspired by the active balance technology used in battery systems, this study introduced an active balance circuit to enhance the homogeneity of SOEC stack towers. A current tracking controller was designed for this circuit to enable independent current control for series-connected stacks, with Simulink simulations demonstrating a response time to reference current signals within 0.2 s. A voltage balancing strategy was proposed to generate the reference current signal for this controller, which was implemented and validated using a multiphysics stack tower model. The results showed that the balancing strategy effectively reduced temperature inhomogeneity by over 10 ∘ C under conditions of gas maldistribution and resistance inconsistency, underscoring the potential of the active balance circuit to improve the durability of SOEC technology.
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SunView 深度解读

该SOEC堆栈主动均衡技术对阳光电源ST系列储能变流器和EV充电桩产品具有重要借鉴价值。文中提出的串联单元独立电流控制方案(响应时间0.2s)与电压均衡策略,可直接应用于PowerTitan储能系统的电池簇管理,解决模组不一致性导致的热失控风险。其多物理场建模方法可优化阳光三电平拓扑的热管理设计,通过主动均衡降低温差超10°C的效果,对提升储能系统寿命和充电桩功率模块可靠性具有实际工程价值,建议结合iSolarCloud平台实现预测性均衡控制。