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Classification and Comparative Evaluation of PV Panel-Integrated DC–DC Converter Concepts

机译:光伏面板集成DC-DC转换器概念的分类和比较评估

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摘要

The strings of photovoltaic panels have a significantly reduced power output when mismatch between the panels occurs, as, e.g., caused by partial shading. With mismatch, either the panel-integrated diodes are bypassing the shaded panels if the string is operated at the current level of the unshaded panels, or some power of the unshaded panels is lost if the string current is reduced to the level of the shaded panels. With the implementation of dc–dc converters on panel level, the maximum available power can be extracted from each panel regardless of any mismatch. In this paper, different concepts of PV panel-integrated dc–dc converters are presented and their suitability for panel integration is evaluated. The buck–boost converter is identified as the most promising concept and an efficiency/power density ($eta$- $rho$) Pareto optimization of this topology is shown. Based on the optimization results, two $275,hbox{W}$ converter prototypes with either Silicon MOSFETs with a switching frequency of $hbox{100 kHz}$ or gallium nitride FETs with a switching frequency of $hbox{400 kHz}$ are designed for an input voltage range of 15 to $hbox{45 V}$ and an output voltage range of 10 to $hbox{100 V}$. The theoretical considerations are verified by efficiency measurements which are compared to the characteristics of a commercial panel-integrated converter.
机译:当例如由于部分阴影引起的面板之间的不匹配时,光伏面板的串具有显着降低的功率输出。在不匹配的情况下,如果灯串在未遮蔽面板的当前水平下运行,则面板集成二极管会绕过遮蔽面板,或者如果将串电流降低至遮蔽面板的水平,则未遮蔽面板的某些功率会丢失。通过在面板级上实施dc-dc转换器,可以从每个面板中提取最大可用功率,而不管任何不匹配情况。在本文中,介绍了光伏面板集成式DC-DC转换器的不同概念,并评估了它们在面板集成中的适用性。降压-升压转换器被认为是最有前途的概念,并且显示了此拓扑的效率/功率密度($ eta- $ rho $)Pareto优化。根据优化结果,设计了两个$ 275,hbox {W} $转换器原型,其开关频率为$ hbox {100 kHz} $的硅MOSFET或开关频率为$ hbox {400 kHz} $的氮化镓FET。输入电压范围为15至$ hbox {45 V} $,输出电压范围为10至$ hbox {100 V} $。理论上的考量通过效率测量得到了验证,效率测量与商用面板集成转换器的特性进行了比较。

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