光伏逆变器热数学建模及实验验证

Geyciane P. de Lima, Guilherme Cerbatto Schmitt Prym, K. B. de Melo, H. S. Moreira, João Lucas de Souza Silva, E. R. Filho, M. G. Villalva
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引用次数: 0

摘要

逆变器是光伏发电系统中最容易发生故障的部件之一。在温度等变量的影响下可能发生故障,因此研究不同条件下的温度行为是一项挑战。通过研究逆变器在不同工作条件下的温度对电气参数的影响,可以延长逆变器的使用寿命,提高逆变器的可靠性。数学热建模是分析太阳能逆变器工作特性的重要工具。关于这个问题的论文在文献中很少。本文分析了一种逆变器热建模方法,并通过实验室实验对其进行了验证。这项工作还与文献中发现的另一种基于线性回归的方法进行了比较。结果表明,与实验数据相比,所分析的建模方法的平均绝对百分比误差小于2%。这项工作的一个重要结论是,一个好的热模拟需要热系数的实验确定,整合数学模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thermal Mathematical Modeling of Photovoltaic Inverters and Experimental Validation
The inverter is one of the most failure-prone components of the photovoltaic (PV) system. Failure can happen under the influence of variables such as temperature, making it a challenge to study temperature behaviour under different conditions. It is possible to extend the useful life and increase the reliability of the inverter by investigating the thermal influence on electrical parameters and by evaluating the temperature under different operating conditions. Mathematical thermal modeling is an important tool in the analysis of the operating behavior of the solar inverter. Papers on this subject are rare in the literature. This work analyzes an inverter thermal modeling method and validates it through laboratory experiments. This work also makes a comparison with another method found in the literature, based on linear regression. As a result, the mean absolute percentage error of the analyzed modelling method was less than 2 % in comparison with data obtained experimentally. An important conclusion of this work is that a good thermal modeling requires the experimental determination of the thermal coefficients that integrate the mathematical model.
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