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A Systems Approach for a Stand-Alone Residential Fuel Cell Power Inverter Design

机译:独立式住宅燃料电池功率逆变器设计的系统方法

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Analysis of an experimentally measured daily load profile reveals that the residential power demand has a high percentage of low power duration over a day. In a stand-alone residential fuel cell power system, the power inverter designed for the peak power requirement will be operating at light loads, where its efficiency is lower, most of the time. Thus, improving the light-load efficiency will provide considerable hydrogen (energy) savings for the stand-alone residential power system. A solution to improve the power inverter efficiency at light loads is proposed. Both simulation and experimental results are given. Results show that the light-load efficiency can be improved by employing and uniquely controlling a parallel IGBT–MOSFET switch combination in a half-bridge inverter topology. It is also shown that substantial savings on hydrogen usage can be realized through the use of new inverter design in stand-alone operations.
机译:对通过实验测得的每日负荷曲线的分析表明,居民用电需求在一天中的低电量持续时间中占很大比例。在独立的住宅燃料电池电源系统中,为满足峰值功率要求而设计的功率逆变器将大部分时间在效率较低的轻负载下运行。因此,提高轻载效率将为独立式住宅电源系统节省大量的氢(能源)。提出了一种提高轻载功率逆变器效率的解决方案。给出了仿真和实验结果。结果表明,通过在半桥逆变器拓扑中采用并唯一地控制并联的IGBT-MOSFET开关组合,可以提高轻载效率。还表明,通过在独立操作中使用新的逆变器设计,可以节省大量氢气。

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