在不均匀遮阳条件下改善太阳能光伏系统能量提取的旁路二极管设计

H. Zheng, Shuhui Li
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引用次数: 8

摘要

太阳能光伏(PV)能源正在成为世界可再生能源中日益重要的组成部分。为了提高能量转换效率,旁路二极管已被应用于光伏系统中。当光伏系统处于不均匀遮阳条件下时,旁路二极管的使用特别有效。然而,遮阳通常以非常随机的方式应用于光伏阵列,使得由旁路二极管贡献的遮阳分析和改进非常难以访问。本文对多种遮阳条件下光伏阵列能量提取特性进行了全面研究。在此基础上,提出了一种基于掺杂浓度的旁路二极管设计方案。对所提出的旁路二极管方案的研究表明,这种旁路二极管设计可以有效地提高不同遮光条件下的能量捕获效率。对采用不同旁路二极管方案和工艺的光伏系统进行了详细的仿真研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of bypass diodes in improving energy extraction of solar PV systems under uneven shading conditions
Solar photovoltaic (PV) energy is becoming an increasingly important part of the world's renewable energy. To enhance energy conversion efficiency, bypass diodes have been used in PV systems. The usage of bypass diodes is particularly effective when a PV system is under an uneven shading condition. However, shading is normally applied to a PV array in very random manners, making shading analysis and improvement contributed by the bypass diodes extremely hard to access. This paper performs a comprehensive study on the PV array energy extraction characteristics under a variety of shading conditions. Based on the study, an enhanced bypass diode design in terms of doping concentration is proposed. Investigation of the proposed bypass diode scheme shows that such bypass diode design is effective in improving energy capture efficiency under diverse shading conditions. Significant simulation studies are conducted for detailed evaluation of a PV system with the different bypass diode schemes and process.
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