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DESIGN OF LCL RESONANT CONVERTER FOR ELECTROLYSER

机译:电解电容器的LCL谐振转换器的设计

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An Electrolyser linked with a DC bus are analyzed and discussed in this paper. An electrolyser is a part of renewable energy system which generates hydrogen from water electrolysis. An LCL series parallel resonant converter (SPRC) for an electrolyser application is simulated and implemented. A three element resonant converter capable of driving voltage type load with load independent operation is analyzed. Detailed experimental results obtained from a MOSFET based DC-DC resonant converter are presented to verify the analysis. The MATLAB simulated results show that the output of converter is free from the ripples, constant current, regulated output voltage and this type of converter can be used for electrolyser application. This converter has advantages like high power density, low EMI and reduced switching stresses. The simulation results are verified with the experimental results.
机译:本文对与直流母线连接的电解槽进行了分析和讨论。电解槽是可再生能源系统的一部分,可通过水电解产生氢。模拟并实现了用于电解器应用的LCL串联并联谐振转换器(SPRC)。分析了能够以独立于负载的方式驱动电压型负载的三元件谐振转换器。提出了从基于MOSFET的DC-DC谐振转换器获得的详细实验结果,以验证分析结果。 MATLAB仿真结果表明,转换器的输出没有波动,恒定电流,稳定的输出电压,这种类型的转换器可用于电解器应用。该转换器具有高功率密度,低EMI和降低开关应力等优点。实验结果验证了仿真结果。

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