首页> 外文会议>Automation Quality and Testing Robotics (AQTR), 2012 IEEE International Conference on >A proposed hardware design and control technique for solid polymer electrolyte water electrolyzer directly coupled with photovoltaic panels
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A proposed hardware design and control technique for solid polymer electrolyte water electrolyzer directly coupled with photovoltaic panels

机译:一种直接与光伏电池板耦合的固体聚合物电解质水电解槽的硬件设计和控制技术

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摘要

Hydrogen economy relies on hydrogen production. One method for hydrogen production is the water electrolysis in solid polymer electrolyte electrolyzers using electrical energy from renewable energy sources such a solar energy. The hydrogen produced with such system is of very high purity (more than 99.9%) suitable for later usage in fuel cells systems. This paper proposes a specific design for the solar - hydrogen system where the photovoltaic panel is coupled directly with the electrolyzer and a control technique is used in order to achieve high efficiency in the system operation and hydrogen production. The main components of the solar hydrogen system are modeled in Matlab/Simulink and the system is simulated under various conditions of solar irradiance. Electrolyzer efficiencies between 88% and 92% have been observed, with a maximum of 98 % reached for a certain period of time.
机译:氢气经济依赖于氢气生产。产生氢的一种方法是使用来自可再生能源例如太阳能的电能在固体聚合物电解质电解槽中进行水电解。用这种系统产生的氢气具有很高的纯度(大于99.9%),适合以后在燃料电池系统中使用。本文提出了一种针对太阳能-氢气系统的特定设计,该系统中的光伏面板直接与电解槽耦合,并采用一种控制技术以实现系统运行和制氢的高效率。在Matlab / Simulink中对太阳能氢系统的主要组件进行了建模,并在各种太阳辐射条件下对该系统进行了仿真。观察到的电解器效率在88%到92%之间,在一段时间内最高达到98%。

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