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Comparison of thyristor and insulated-gate bipolar transistor -based power supply topologies in industrial water electrolysis applications

机译:晶闸管和绝缘栅双极晶体管基于工业水电解应用中的电源拓扑的比较

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The demand for green hydrogen is growing as the increasing production of pure hydrogen can no longer be based on fossil hydrocarbons. As water electrolysis would move from niche to a significant consumer of emission-free electricity, the efficiency of electrolytic gas production, lifetime of water electrolysis systems, and balance in the electricity grid become essential. The operational and investment costs of an industrial-scale alkaline water electrolyzer with four practical rectifier topologies are investigated. The results show thyristor-based rectifiers provide poor quality for the AC and DC sides, which leads to nonoptimal specific energy consumption (SEC) of the water electrolyzer and a notable reactive power component. Transistor-based topologies may offer up to 4.5% lower SEC of the electrolyzer than the conventional 6-pulse thyristor bridge. The reactive power results in additional costs in either investments in compensation equipment or regular allowance costs. An additional DC/ DC converter can be installed to improve the power quality for the electrolyzer, but the second conversion stage adds to the system complexity and cost without eliminating reactive power. A modular single-stage rectifier based on insulated-gate bipolar transistor (IGBT) bridges is suggested as an alternative to provide improved power quality for both the electrolyzer and the electricity grid.
机译:随着纯氢的产量不断增加,对绿色氢的需求不再基于化石烃。随着水电解能从利基移动到无排放电力的重要消费者,电解天然气生产效率,水电解系统的寿命和电网的平衡变得必不可少。研究了具有四种实际整流拓扑的工业规模碱性水电解槽的运营和投资成本。结果显示基于晶闸管的整流器为AC和DC侧提供差的质量,这导致水电解器的非优质能耗(SEC)和一个值得注意的无功功率分量。基于晶体管的拓扑结构可以提供比传统的6脉冲晶闸管桥更高达4.5%的电解槽。无功功率导致赔偿设备或常规允许费用的投资中的额外成本。可以安装额外的DC / DC转换器以提高电解器的电源质量,但第二个转换级增加了系统复杂性和成本,而不会消除无功功率。建议基于绝缘栅极双极晶体管(IGBT)桥的模块化单级整流器作为为电解槽和电网提供改进的功率质量的替代方案。

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