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Isolated High Gain Multi-Input Converter fed Floating PV System for DC Microgrid

机译:用于直流微电网的隔离式高增益多输入转换器馈电浮动光伏系统

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An Isolated High Gain Multi-Input Converter (IHG-MIC) fed floating PV DC backbone microgrid catering to lake side recreational activities is presented in the paper. The proposed converter utilizes two units of tandem connected interleaved boost converter with multiplier cells converging at high frequency transformer to provide high voltage gain with intrinsic galvanic isolation. The converter facilitates the connection of low voltage floating PV panels with the 380V backbone DC microgrid as a module integrated approach. The low stress aggregation at the low side devices and interleaving of the inductor currents at the input stage allows highly efficient operation of the converter. Each unit of IHG-MIC feeding the power to the backbone DC microgrid avoid circulating and common mode current to offer non-interfering ambience. The fast dynamics of the converter under partial shading of floating PV panels caused by the waves is discussed. The capability of fast variation of voltage gain of the proposed converter is demonstrated through simulated results in MATLAB environment. The comparison of improved efficiency of the proposed converter with the cascaded boost converter is drawn in terms of the variation in the duty cycle.
机译:本文提出了一种隔离式高增益多输入转换器(IHG-MIC),它是为满足湖边娱乐活动而提供的浮动PV DC主干网微电网。提出的转换器利用串联的交错式升压转换器的两个单元,乘法器单元在高频变压器处会聚,以提供具有固有电流隔离的高电压增益。该转换器有助于将低压浮动PV面板与380V主干DC微电网作为模块集成方法进行连接。低端器件上的低应力聚集和输入级电感电流的交织使转换器能够高效运行。 IHG-MIC的每个单元向主干DC微电网供电,避免了循环电流和共模电流,以提供无干扰的环境。讨论了在波浪引起的浮动PV面板部分遮蔽下转换器的快速动态。通过在MATLAB环境下的仿真结果,证明了所提出的转换器的电压增益快速变化的能力。根据占空比的变化,得出了所提出的转换器与级联升压转换器的改进效率的比较。

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