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Optimization strategies of PEM electrolyser as part of solar PV system

机译:作为太阳能光伏系统一部分的PEM电解槽的优化策略

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Solar and wind power have intermittent nature. In order to guarantee continuous power supply, they need to be accompanied with energy storage systems or bridges between different energy sectors. Hydrogen is a potential candidate for both applications (an energy storage system and bridging technology). Hence, it is interesting to study the practical dynamic properties and limitations of electrolysers in the viewpoint of renewable energy production. This paper studies optimization strategies of a proton exchange membrane (PEM) electrolyser together with a solar photovoltaic (PV) system.
机译:太阳能和风能具有间歇性。为了保证持续供电,它们需要配备能量存储系统或不同能源部门之间的桥梁。氢是这两种应用(储能系统和桥接技术)的潜在候选者。因此,从可再生能源生产的角度研究电解槽的实际动态特性和局限性是很有趣的。本文研究了质子交换膜(PEM)电解槽与太阳能光伏(PV)系统一起的优化策略。

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