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Improvement of power system frequency stability using alkaline electrolysis plants

机译:使用碱性电解装置改善电力系统的频率稳定性

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Hydrogen could become an important energy carrier, in particular used as an input to fuel cell electric vehicles. Alkaline electrolysers are an attractive technology to produce carbon-free hydrogen from renewable generated electricity. Large-scale alkaline electrolysers used in future hydrogen-filling stations could also be utilised to improve the frequency stability of the electricity power system. The electrolyser load can be controlled to respond to power system frequency variations, and in the case of a sudden loss of generation, these electrolysers could rapidly decrease their load on the system to maintain the power balance. In this study, the potential of alkaline electrolysers to dynamically stabilise the frequency of the power system is assessed. A model of steam turbine generation unit has been developed in MATLAB SIMULINK environment, and a scenario in which there is a sudden loss of generation in the system is examined. It is demonstrated that alkaline electrolysers could prevent unacceptable frequency drop, i.e. below the statutory limit, following by an abrupt loss of generation, even with no spinning reserve on the system. In this article for the first time, the ramping rate of an alkaline electrolyser is shown through experimental data.
机译:氢可能成为重要的能量载体,尤其是用作燃料电池电动汽车的输入。碱性电解槽是一种可再生能源,可生产无碳氢。将来的加氢站中使用的大型碱性电解槽也可以用来提高电力系统的频率稳定性。可以控制电解槽负载以响应电源系统的频率变化,并且在突然发电中断的情况下,这些电解槽可以迅速降低其在系统上的负载,以保持功率平衡。在这项研究中,评估了碱性电解槽动态稳定电力系统频率的潜力。在MATLAB SIMULINK环境中开发了一种汽轮发电机组模型,并研究了系统突然发生发电中断的情况。事实证明,碱性电解槽可以防止不可接受的频率下降,即低于法定极限,即使系统上没有旋转储备,也可以避免突然的发电损失。本文首次通过实验数据显示了碱性电解槽的升温速率。

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