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Renewable hydrogen power system and system control design.

机译:可再生氢动力系统及系统控制设计。

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The research reported in this thesis is part of a project that is Phase III of a 5-phase program to develop cost-effective renewable hydrogen based off-grid power system for rural Nevada and the Southwest. The primary sources of power generation are two Photo-Voltaic Panels and Wind Turbines. When this power is excess, it generates hydrogen through electrolysis. Hydrogen acts as a medium of energy storage and is used by a Renewable Energy Internal Combustion Engine Generator to produce power as required.; The control software developed in LabVIEWRTM, in conjunction with data from twenty-seven sensors automatically operates the entire system. This thesis describes the control system and optimization efforts undertaken for better system performance. A unique part of this thesis is the integration of weather forecast data to predict resource availability and hydrogen generation.
机译:本论文中报道的研究是该项目的一部分,该项目是一个五阶段计划的第三阶段,该计划旨在为内华达州农村地区和西南地区开发具有成本效益的可再生氢离网电力系统。发电的主要来源是两个光伏面板和风力涡轮机。当该功率过量时,它通过电解产生氢。氢充当能量存储的媒介,可再生能源内燃机发电机使用氢来按需发电。 LabVIEWRTM中开发的控制软件,结合来自27个传感器的数据,可以自动操作整个系统。本文介绍了控制系统以及为提高系统性能而进行的优化工作。本文的独特部分是天气预报数据的集成,以预测资源的可用性和氢的产生。

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