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Online extraction of physical parameters of photovoltaic modules in a building-integrated photovoltaic system

机译:在线提取建筑物集成光伏系统中光伏模块的物理参数

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Building-integrated photovoltaic systems are solar photovoltaic modules that are used to replace traditional building construction materials to generate electrical energy. Photovoltaic modules are generally installed on the roofs or facades of buildings and cannot be monitored by conventional methods. This work presents a new online technique for analysing the current-voltage characteristics of photovoltaic modules installed on the facades of building-integrated photovoltaic systems. The proposed method, which is based on the modified double-diode model, can extract six physical parameters of the photovoltaic module that rely on the current and voltage at the short-circuit and open-circuit points and at the maximum power point. Unlike the approaches from existing studies, the method proposed in this paper requires only the current at the maximum power point. By measuring the solar irradiance, wind speed and average temperature of the photovoltaic module, the current and voltage at the short-circuit and open-circuit points can be calculated. To study the accuracy of the proposed models, the absolute error and root mean square error of individual photovoltaic modules are examined. The results indicate that the minimum absolute error of the current appears near the maximum power point. Moreover, the proposed simulation of the current-voltage characteristic curves achieves a lower root mean square error value and exhibits a better ability to represent the current-voltage characteristics of the photovoltaic modules. In addition, methods are used to extract the six parameters of the photovoltaic module, which operates in the building-integrated photovoltaic system. The experimental results show that the prediction of the current-voltage characteristic curves achieves the lowest root mean square error values at the short-circuit and open-circuit points and at the maximum power point. Furthermore, regardless of whether operating in the building-integrated photovoltaic system, the six parameters of the photovoltaic modules with the same initial characteristics extracted via the proposed methods have similar numerical ranges under standard test conditions. Based on these conclusions, the six parameters based on the modified double-diode model are useful and practical for the simulation and evaluation of the current-voltage characteristics of the photovoltaic module in the building-integrated photovoltaic system.
机译:建筑物集成的光伏系统是太阳能光伏模块,用于替代传统的建筑材料来产生电能。光伏模块通常安装在建筑物的屋顶或立面上,并且不能通过常规方法进行监控。这项工作提出了一种新的在线技术,用于分析安装在建筑物集成光伏系统立面上的光伏模块的电流-电压特性。该方法基于改进的双二极管模型,可以提取光伏模块的六个物理参数,这些参数取决于短路点和开路点以及最大功率点处的电流和电压。与现有研究方法不同,本文提出的方法仅在最大功率点需要电流。通过测量太阳能辐照度,风速和光伏模块的平均温度,可以计算出短路点和开路点的电流和电压。为了研究所提出模型的准确性,检查了各个光伏模块的绝对误差和均方根误差。结果表明,电流的最小绝对误差出现在最大功率点附近。此外,所提出的电流-电压特性曲线的仿真实现了较低的均方根误差值,并且具有更好的表示光伏模块的电流-电压特性的能力。另外,使用方法来提取光伏模块的六个参数,该六个参数在建筑物集成光伏系统中运行。实验结果表明,对电流-电压特性曲线的预测在短路点和开路点以及最大功率点处实现了最低的均方根误差值。此外,无论是否在建筑物集成光伏系统中运行,通过标准方法提取的具有相同初始特性的光伏模块的六个参数在标准测试条件下均具有相似的数值范围。基于这些结论,基于改进的双二极管模型的六个参数对于建筑集成光伏系统中光伏模块的电流-电压特性的仿真和评估是有用和实用的。

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