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用于支持快速动态运行的带DC/DC接口电解系统的功率控制器设计:基于模型与实验的研究
Power controller design for electrolysis systems with DC/DC interface supporting fast dynamic operation: A model-based and experimental study
| 作者 | Xiang Cheng · Jin Lin · Mingjun Zhang · Liandong Sh · Bosen Yang · Feng Liu · Yonghua Song |
| 期刊 | Applied Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 378 卷 |
| 技术分类 | 控制与算法 |
| 技术标签 | DC-DC变换器 |
| 相关度评分 | ★★★★ 4.0 / 5.0 |
| 关键词 | Electrolysis systems modeling with the stack and the DC/DC interface. |
语言:
中文摘要
摘要 由波动性与间歇性可再生能源供电的电解系统,若能快速且准确地跟踪功率指令信号,对于可再生电能制氢(ReP2H)工厂中的能量管理以及作为虚拟电厂(VPP)参与电网频率调节具有重要意义。然而,由于存在电双层(EDL)效应,电解堆功率的变化相对于电流变化存在显著滞后(数秒甚至超过20秒)。这一特性限制了电解系统作为电网灵活负荷的进一步应用。通过在直接连接电解堆的电力电子接口中设计合适的功率控制器以替代传统的电流控制器,有望提升电解堆功率的快速动态响应能力。本文提出了一种统一的碱性水电解(AWE)系统和质子交换膜(PEM)电解系统的电气等效电路模型,该模型详细包含了并联Buck型DC/DC接口,同时考虑了EDL效应及电解系统的非线性行为,适用于控制器设计。在此基础上,提出了一种基于频域分析的功率控制器设计方法及鲁棒参数整定策略,可在避免过大电流超调的前提下实现快速响应。所提出的模型与方法的准确性及有效性在2 Nm³/h(10 kW)AWE系统和1 Nm³/h(5 kW)PEM电解系统上通过实验得到验证。采用所设计的功率控制器后,AWE和PEM电解系统分别可在0.266秒和0.21秒内完成电解堆功率的调节,满足能量管理与频率调节的应用需求。此外,本文还分析了该方法对电解堆及DC/DC接口参数波动的敏感性以及温度稳定性。
English Abstract
Abstract The ability of the electrolysis system , powered by fluctuating and intermittent renewable sources, to rapidly and accurately track power signals is crucial for energy management in renewable power-to-hydrogen (ReP2H) plants and for providing grid frequency regulation as a virtual power plant (VPP). However, there is a considerable lag (several seconds or even more than 20 s) between the changes of the stack power compared with the stack current, mainly due to the existence of the electric double-layer (EDL) effect. This characteristic hinders the further application of electrolysis systems as flexible loads in power grids. By designing a suitable power controller in the power-electronics interface directly connected to the stack to replace the traditional current controller, it is expected to improve the fast dynamic response of the stack power. This paper proposes a unified electrical equivalent circuit for alkaline water electrolysis (AWE) systems and proton exchange membrane (PEM) electrolysis system with detailed parallel Buck type DC/DC interface, which considers the EDL effect and nonlinear behaviors of electrolysis systems and is suitable for controller design . A power controller design and robust parameter tuning method without excessive current overshoot based on frequency-domain analysis is proposed. The accuracy and effectiveness of the proposed model and method are verified by the experimental test on the 2 N m 3 /h(10 kW) AWE system and the 1 N m 3 /h(5 kW) PEM electrolysis system. With the proposed power controller, the AWE and PEM electrolysis system can change the stack power within 0.266s and 0.21s respectively, meeting the requirements of energy management and frequency regulation. Additionally, the temperature stability and the sensitivity of the proposed method to parameter fluctuations in the stack and DC/DC interface are analyzed.
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SunView 深度解读
该电解制氢功率控制器技术对阳光电源储能-制氢耦合系统具有重要价值。论文提出的功率控制器可将电堆响应时间缩短至0.2秒级,突破传统电流控制模式的双电层效应限制,这与阳光电源ST系列PCS的快速功率调节能力高度契合。技术可应用于:1)PowerTitan储能系统与电解槽的DC/DC接口优化,实现可再生能源制氢的毫秒级功率跟踪;2)结合VSG虚拟同步机技术,使电解系统作为虚拟电厂参与电网一次调频;3)借鉴其频域鲁棒参数整定方法优化SiC-based Buck变换器控制策略。该研究为阳光电源拓展绿氢装备业务、构建光储氢一体化解决方案提供了关键控制算法参考。