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基于晶闸管和IGBT电解整流器在公用事业规模可再生能源制氢系统中的最优投资组合
Optimal Investment Portfolio of Thyristor- and IGBT-Based Electrolysis Rectifiers in Utility-Scale Renewable P2H Systems
| 作者 | Yangjun Zeng · Yiwei Qiu · Liuchao Xu · Chenjia Gu · Yi Zhou · Jiarong Li |
| 期刊 | IEEE Transactions on Sustainable Energy |
| 出版日期 | 2025年8月 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 IGBT DAB 地面光伏电站 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 可再生电力制氢 整流器 最优投资组合模型 两阶段随机规划 收益提升 |
语言:
中文摘要
可再生能源制氢(ReP2H)系统需通过整流器为电解槽(ELZs)供电。绝缘栅双极型晶体管整流器(IGBT-Rs)与晶闸管整流器(TRs)在成本、损耗及无功功率特性上存在显著差异。本文提出一种最优投资组合模型,综合考虑ELZs、整流器与无功补偿设备的投资决策,并协调可再生能源、储能、无功资源及多电解槽的启停与负载分配。基于加权信息间隙决策理论(W-IGDT)构建两阶段随机规划模型以应对风光出力与氢价不确定性,并采用逐步对冲算法加速求解。算例表明,相较于单一整流器配置或常规设计,最优配置最高可提升收益13.78%,且几乎无需额外无功补偿投资,推荐TR与IGBT-R比例为3:1。
English Abstract
Renewable power-to-hydrogen (ReP2H) systems require rectifiers to supply power to electrolyzers (ELZs). Two main types of rectifiers, insulated-gate bipolar transistor rectifiers (IGBT-Rs) and thyristor rectifiers (TRs), offer distinct tradeoffs. IGBT-Rs provide flexible reactive power control but are costly, whereas TRs are more affordable with lower power loss but consume a large amount of uncontrollable reactive power. A mixed configuration of rectifiers in utility-scale ReP2H systems could achieve a decent tradeoff and increase overall profitability. To explore this potential, this paper proposes an optimal investment portfolio model. First, we model and compare the active and reactive power characteristics of ELZs powered by TRs and IGBT-Rs. Second, we consider the investment of ELZs, rectifiers, and var resources and coordinate the operation of renewables, energy storage, var resources, and the on-off switching and load allocation of multiple ELZs. Subsequently, a two-stage stochastic programming (SP) model based on weighted information gap decision theory (W-IGDT) is developed to address the uncertainties of the renewable power and hydrogen price, and we apply the progressive hedging (PH) algorithm to accelerate its solution. Case studies demonstrate that optimal rectifier configurations increase revenue by at most 13.78% compared with configurations using only TRs or IGBT-Rs, existing project setups, or intuitive designs. Under the optimal portfolio, reactive power compensation investment is nearly eliminated, with a preferred TR-to-IGBT-R ratio of 3:1.
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SunView 深度解读
该研究对阳光电源光储制氢一体化系统具有重要应用价值。针对公司ST系列储能变流器和SG系列光伏逆变器配套的电解制氢整流器选型,研究提出的TR与IGBT-R 3:1最优配置方案可直接指导产品组合设计,在降低系统投资的同时提升13.78%收益。基于W-IGDT的两阶段随机规划方法可集成至iSolarCloud平台,实现光伏-储能-制氢多能源协调优化调度。研究揭示的整流器无功特性差异对阳光电源开发混合拓扑整流器具有启发意义,可结合公司SiC器件应用优势,开发兼顾成本与性能的新型电解整流模块,并通过智能控制算法优化多电解槽启停与负载分配,提升可再生能源制氢系统整体经济性。