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Large-scale PV system based on the multiphase isolated DC/DC converter

机译:基于多相隔离式DC / DC转换器的大型光伏系统

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The large-scale photovoltaic (PV) systems have already been reached 200 MW power level and they will continue to grow in size in the upcoming years. This trend will challenge the existing PV system architectures by requiring power converters with a higher power rating and a higher voltage level at the point of common coupling (PCC). The cascaded H-bridge (CHB) multilevel converter is one of the solutions which could deal with the aforementioned challenges. However, the topology based on the CHB converter faces the issue of leakage current that flows through the solar panel parasitic capacitance to ground which could damage the PV panels and pose safety problems. This paper proposes a multiphase isolated DC/DC converter for the CHB topology for a large-scale PV system which eliminates the leakage current issue. At the same time, the multiphase structure of the DC/DC converter helps to increase the power rating of the converter and to reduce the PV voltage and current ripples. A 0.54 MW rated seven-level CHB converter using multiphase isolated DC/DC converters has been modeled and simulated using MATLAB/Simulink and PLECS Blockset. Simulation results of different case studies are presented to evaluate the performance of the proposed PV system configuration.
机译:大型光伏(PV)系统已经达到200 MW的功率水平,并且在未来几年中它们的规模将继续增长。通过要求在公共耦合点(PCC)具有更高额定功率和更高电压电平的功率转换器,这种趋势将挑战现有的光伏系统架构。级联H桥(CHB)多电平转换器是可以应对上述挑战的解决方案之一。然而,基于CHB转换器的拓扑面临着泄漏电流的问题,该泄漏电流流过太阳能电池板的寄生电容并流向地面,这可能会损坏光伏电池板并造成安全问题。本文提出了一种用于大型光伏系统的CHB拓扑的多相隔离式DC / DC转换器,它消除了泄漏电流问题。同时,DC / DC转换器的多相结构有助于提高转换器的额定功率并减少PV电压和电流纹波。使用MATLAB / Simulink和PLECS Blockset对使用多相隔离式DC / DC转换器的额定值为0.54 MW的七级CHB转换器进行了建模和仿真。提出了不同案例研究的仿真结果,以评估所提出的光伏系统配置的性能。

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