巨型太阳能光伏系统中光伏组件输出差影响的安全性能模拟

Naotaka Oka, Yasuhito Takahashi, K. Fujiwara, Kazuyuki Hidaka, H. Morita
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引用次数: 0

摘要

作者强调了光伏组件输出差异在大型太阳能光伏系统中的重要性。本文首先根据实验数据对不同类型的晶体硅光伏组件进行了建模,并对功率调节系统的最大跟踪点运行进行了描述。然后,讨论了更换不同输出的光伏组件时,反向电流和反向电压发生的频率。还讨论了改变更换光伏组件的次数和更换光伏组件的位置时,反向电流和反向电压发生的频率。因此,产生反向电流的原因是:开路电压的差异和串联的光伏组件的数量。此外,导致引线反向电压:短路电流的差异和光伏组件并联的数量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Safety performance simulation for the effect of a photovoltaic module output difference in mega solar photovoltaic systems
The authors stress the importance of photovoltaic module output difference in mega solar photovoltaic systems. The authors first describe modelling of the various types of the crystalline silicon photovoltaic modules and the maximum tracking point operation of the power conditioning system based on the experimental data. Then, the authors discuss the frequency of reverse current and voltage occurrence when replacing photovoltaic modules with different output. Also, discussed are the frequency of reverse current and reverse voltage occurrence when changing the number of replacing photovoltaic modules and the position of replacing photovoltaic modules. As a result, causes that leads to reverse current: difference in open circuit voltage and the number of photovoltaic modules connected serially. Moreover, causes the leads to reverse voltage: difference in short circuit current and the number of photovoltaic modules connected in parallel.
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