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A New PV System Configuration Based on Submodule Integrated Converters

机译:基于子模块集成转换器的光伏系统新配置

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The power loss due to mismatch effect among interconnected photovoltaic (PV) modules can be significantly reduced by applying the maximum power point tracking to fine granularity level. In this paper, a novel configuration is proposed to utilize a submodule integrated converter (subMIC) for effective solar energy harvesting. Gallium Nitride (GaN) field-effect transistors (FETs) are used to construct the power circuits for high conversion efficiency and high power density. The detailed mathematical analysis is presented to provide insight into the architecture. Simulation is carried out to demonstrate the system behavior in response to real-world atmospheric conditions. The hardware prototype consisting of three subMICs is developed utilizing GaN FET as the power switches, which are based on industrial standard and are compact to fit into the junction box of commercial PV modules. The advantages in terms of conversion efficiency, system cost, and dynamic performance are experimentally proved by the comparison with a benchmark system.
机译:通过将最大功率点跟踪应用于精细粒度级别,可以显着减少由于互连的光伏(PV)模块之间的失配效应引起的功率损耗。在本文中,提出了一种新颖的配置,以利用子模块集成转换器(subMIC)来有效地收集太阳能。氮化镓(GaN)场效应晶体管(FET)用于构建功率电路,以实现高转换效率和高功率密度。进行了详细的数学分析,以提供对体系结构的了解。进行了仿真,以演示系统对实际大气条件的响应。由三个subMIC组成的硬件原型是利用GaN FET作为电源开关开发的,该开关基于工业标准并且结构紧凑,可装入商用PV模块的接线盒中。通过与基准系统进行比较,实验证明了在转换效率,系统成本和动态性能方面的优势。

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