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储能系统技术 储能系统 ★ 5.0

电解槽:趋势、电气建模及其动态响应综述

Electrolysers: A Review on Trends, Electrical Modeling, and Their Dynamic Responses

作者 Mahyar Tofighi-Milani · Sajjad Fattaheian-Dehkordi · Matti Lehtonen
期刊 IEEE Access
出版日期 2025年1月
技术分类 储能系统技术
技术标签 储能系统
相关度评分 ★★★★★ 5.0 / 5.0
关键词 可再生能源 氢能 电解槽 电力系统 电气建模
语言:

中文摘要

全球向电力系统高比例可再生能源集成运动以应对气候变化,突显清洁能源在未来能源系统可持续发展中的重要性。同时氢能作为清洁燃料在工业和交通等领域日益突出。然而可再生能源间歇性给供需平衡和电网稳定性带来挑战,需要高效储能解决方案。氢经济为电力系统平衡管理挑战引入新维度。在电气建模特别是电力系统稳定性分析方面,电解槽动态模型至关重要。由过剩可再生能源驱动的水电解已成为制氢的有前景方法,促进可持续能源实践进步。本文概述电解技术,探索碱性、质子交换膜和固体氧化物电解槽的电气行为,同时从建模角度分类。分别研究电解槽电气建模,涵盖三种主要格式:电气等效电路EEC、数学公式MF和框图BD呈现。本文还研究碱性和质子交换膜电解槽的动态响应,识别为最适合集成到电力系统动态研究的类型。通过综述现有文献和模型分类,本文旨在提供电解槽在电网运行中行为和动态的全面理解。

English Abstract

The global movement towards high integration of renewable energy sources into power systems to combat climate change underscores the importance of clean energy sources in sustainable development of future energy systems. Simultaneously, hydrogen is gaining prominence as a clean fuel, particularly in sectors like industry and transportation. However, the intermittent nature of renewable energies poses challenges for demand-supply balance and grid stability, necessitating efficient storage solutions. Additionally, the hydrogen economy introduces a new dimension to the challenge of power system balance management. In terms of electrical modeling, particularly for power system stability analysis, dynamic models of electrolysers are essential. Water electrolysis, powered by surplus renewable energy, has emerged as a promising method for hydrogen production, fostering advancements in sustainable energy practices. This paper provides an overview of electrolysis, exploring the electrical behavior of Alkaline, proton exchange membrane, and solid oxide electrolysers, while also categorizing them from a modelling perspective. Respectively, it examines the electrical modeling of electrolysers, encompassing three main formats: electrical equivalent circuit (EEC), mathematical formulation (MF), and block diagram (BD) presentation. Additionally, this paper investigates the dynamic responses of Alkaline and proton exchange membrane electrolysers, identified as the most suitable types for integration into power system dynamic studies. Through a review of existing literature and categorization of models, this paper aims to offer a comprehensive understanding of electrolyser behavior and dynamics in operation of power grids.
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SunView 深度解读

该电解槽综述对阳光电源氢能和储能系统集成有前瞻性参考价值。阳光可探索电解制氢在可再生能源消纳和长时储能中的应用。电解槽电气建模技术对阳光开发电解槽电源和能量管理系统有指导意义。动态响应分析对阳光储能系统与电解槽协同控制有价值。电解槽作为灵活性负荷参与电网调节,与阳光虚拟电厂理念一致。该综述为阳光探索氢储能和电氢耦合新业务提供技术基础,支撑阳光拓展氢能产业链和综合能源服务领域。