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首页> 外文期刊>International journal of hydrogen energy >Proton exchange membrane water electrolysis: Modeling for hydrogen flow rate control
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Proton exchange membrane water electrolysis: Modeling for hydrogen flow rate control

机译:质子交换膜水电解:氢气流量控制建模

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Nowadays, the proton exchange membrane electrolyzer (PEMEL) is a promising and attractive technology when coupling with renewable energy sources (RES). Indeed, PEMEL can respond quickly to the dynamic operations of RES. Given that PEMEL must be supplied with a low DC voltage, DC-DC converters are mandatory. In this work, a stacked interleaved buck DC-DC converter is used. In this paper, the tuning of proportional, integral and derivative (PID) controllers, which are often used to enhance electrolyzer performances (efficient and reliable operation), is based on the dynamic behavior of the PEMEL. Before designing the PID controller, a model of the PEMEL is proposed based on input-output measured data, and this model is combined with the converter state-space description. Then, the obtained global model is used to tune two PID controller configurations: the first one to control the current and the second one to control the voltage of the PEMEL. Experimental tests are carried out to validate the effectiveness of the designed control laws. (c) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:如今,当与可再生能源(RES)偶联时,质子交换膜电解槽(PEMEL)是一种有前途和有吸引力的技术。实际上,PEMEL可以快速响应RE的动态操作。如果必须使用低直流电压提供PEMEL,则DC-DC转换器是强制性的。在这项工作中,使用堆叠的交织降压DC-DC转换器。在本文中,经常用于增强电解槽性能的比例,积分和衍生物(PID)控制器的调整是基于Pemel的动态行为。在设计PID控制器之前,基于输入输出测量数据提出了一种PEMEL模型,并且该模型与转换器状态空间描述相结合。然后,所获得的全局模型用于调谐两个PID控制器配置:第一个控制电流和第二个以控制Pemel的电压。进行实验测试以验证设计控制法的有效性。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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