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首页> 外文期刊>Progress in photovoltaics >Performance evaluation of IEC 60891:2021 procedures for correcting I–V curves of photovoltaic modules under healthy and faulty conditions
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Performance evaluation of IEC 60891:2021 procedures for correcting I–V curves of photovoltaic modules under healthy and faulty conditions

机译:IEC 60891:2021 程序在健康和故障条件下校正光伏组件的 I-V 曲线的性能评估

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Abstract Correction of PV modules' current–voltage characteristics (I–V curves) is essential before they can be used for performance analysis and fault diagnosis under real‐life conditions. IEC 60891 (version 2021) has updated Procedure 2 and proposed a new correction Procedure 4 compared to the 2009 version. This study aims to analyze the performance of these new procedures applied to I–V curves of faulty PV modules. The work is based on an mc‐Si PV module considering healthy and four common fault conditions with varying fault severity. The irradiance and temperature measured in the field are used to generate I–V curves. The correction procedures of IEC 60891 (version 2021) based on a single curve (Procedures 1, 2, and 4) are evaluated. Environmental factors such as measurement season and irradiation level on the correction performance are studied. The results show that Procedure 2 is relatively better with the relative root‐mean‐square error of the curve current as 2.6 compared to Procedure 1 (2.8) and Procedure 4 (4.8). Experimental tests using real I–V curves also show that Procedure 2 exhibits better robustness of correction. The new Procedure 4, whose correction coefficients are determined dynamically, performs poorly under partial shading and short‐circuit bypass conditions. However, it achieves similar or better performance than Procedures 1 and 2 under degraded conditions, where the PV fault is generally not easy to detect, making the I–V correction more necessary. It is, therefore, a promising alternative correction procedure when it is difficult to determine the correction coefficients in advance. Finally, the pros and cons of the procedures are discussed with the suggestion of correction procedures under different conditions. The challenges and prospects are also provided.
机译:摘要 光伏组件的电流-电压特性(I-V曲线)的校正对于实际条件下的性能分析和故障诊断至关重要。IEC 60891(2021 版)更新了程序 2,并与 2009 版相比提出了新的更正程序 4。本研究旨在分析这些应用于故障光伏组件 I-V 曲线的新程序的性能。这项工作基于mc-Si光伏组件,该组件考虑了健康和四种具有不同故障严重程度的常见故障条件。在现场测量的辐照度和温度用于生成 I-V 曲线。评估了基于单条曲线(程序 1、2 和 4)的 IEC 60891(2021 版)校正程序。研究了测量季节和辐照水平等环境因素对校正性能的影响。结果表明,与程序1(2.8%)和程序4(4.8%)相比,程序2相对更好,曲线电流的相对均方根误差为2.6%。使用真实 I-V 曲线的实验测试也表明,程序 2 表现出更好的校正鲁棒性。新的程序 4 的校正系数是动态确定的,在部分阴影和短路旁路条件下性能不佳。然而,在性能下降的条件下,它的性能与程序 1 和 2 相似或更好,其中 PV 故障通常不容易检测,因此 I-V 校正更加必要。因此,当难以事先确定校正系数时,这是一种很有前途的替代校正程序。最后,讨论了这些程序的优缺点,并提出了不同条件下的纠正程序。还提供了挑战和前景。

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