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储能系统技术 储能系统 多电平 ★ 5.0

一种具有宽范围运行策略的多级定压氢电耦合储能系统

A multi-level isobaric hydrogen-electric coupled energy storage system with a wide-range operational strategy: enhancing efficiency and flexibility in renewable-dominated power grid

作者 Ning Ma · Pan Zhao · Wenpan Xu · Aijie Liu · Huichao Zhu · Zhaochun Shi · Jiangfeng Wang
期刊 Applied Energy
出版日期 2025年1月
卷/期 第 401 卷
技术分类 储能系统技术
技术标签 储能系统 多电平
相关度评分 ★★★★★ 5.0 / 5.0
关键词 Developed a novel integration strategy to enhance hydrogen-electric system efficiency.
语言:

中文摘要

摘要 高比例可再生能源接入导致电力系统出现显著波动,对储能系统提出了更高的灵活吸纳与高效供电要求。本文提出了一种新型集成策略,将定压储能技术的高效率特性与氢电混合储能技术的灵活性相结合,在此基础上构建了一套多级净零排放的定压氢电耦合储能系统。该系统具备宽范围的功率调节能力,并结合自适应功率分配方案,在高可再生能源渗透率的实际场景中验证了其有效性。结果表明,该系统支持五种充电模式和四种放电模式,其中充电模式I的峰值效率达到85.17%,放电模式II的峰值效率为46.66%。宽范围协调控制框架在低于额定功率时采用变转速与进气导叶协同控制模式,高于额定功率时切换至变转速模式,相较于仅采用变转速控制的串联构型,等熵压缩效率保持更高水平,同时可调功率范围扩大了45.28%。所提出的自适应功率分配方案将不平衡功率划分为八种工况,在充电过程中确保CO2压缩机始终运行于设计工况点,而在放电侧则持续利用低压透平作为稳定电源输出。与传统策略相比,所提方法在平均充电效率和平均放电效率方面分别提升了3.49%和5.12%,同时使弃风量和功率失配量分别降低了22.85%和30.69%。此外,参数分析表明,在实际应用中为提升系统整体性能并有效抑制不平衡功率,需综合考虑效率与可靠性指标之间的相互约束关系以及参数调节的协同性。

English Abstract

Abstract Fluctuations in electricity caused by high penetration of renewable energy sources impose greater demands on energy storage systems for flexible absorption and efficient power supply. This paper proposes a novel integration strategy that combines the efficiency of isobaric energy storage technology with the flexibility of hydrogen-electric hybrid energy storage technology. Based on this, a multi-level net-zero emissions isobaric hydrogen-electric coupled energy storage system is developed. The system offers a wide range of power consumption capabilities, and its effectiveness has been validated in real-world scenarios with high renewable energy penetration rates when combined with an adaptive power allocation scheme. The results indicate that the system accommodates five charge modes and four discharge modes, with peak efficiencies achieved in charge mode I (85.17%) and discharge mode II (46.66%). The wide-range coordinated control framework maintains higher compressor isentropic efficiencies while expanding the adjustable power range by 45.28% compared to series configurations using only VS control, operating in a coordination control mode with variable speed and inlet guide vanes below rated power, and switching to variable speed mode above rated power. The adaptive power allocation scheme categorizes the imbalanced power into eight scenarios, keeping the CO 2 compressor operates under design conditions during the charging process, while the discharge side consistently utilizes the low-pressure turbine as a stable power source. Compared with the conventional strategy, the proposed approach demonstrates improvements of 3.49% and 5.12% in average charge and discharge efficiencies, respectively, while reducing wind curtailment and mismatch power by 22.85% and 30.69%, respectively. In addition, parameter analysis indicates that the mutual constraints among efficiency and reliability index parameter adjustments must be comprehensively considered to enhance overall performance and effectively suppress unbalanced power in practical applications.
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SunView 深度解读

该氢电耦合多级等压储能技术对阳光电源ST系列储能变流器及PowerTitan系统具有重要启示。其宽范围功率调节策略(可调功率范围提升45.28%)可优化我司储能PCS的多模式协调控制算法,特别是在高比例新能源场景下的充放电效率提升(充电效率85.17%,放电效率46.66%)与弃风抑制(降低22.85%)方面。自适应功率分配方案可融入iSolarCloud平台的智能调度策略,结合GFM/VSG控制技术增强电网灵活性,为构建零碳排放综合能源解决方案提供技术路径参考。