基于MATLAB Simulink算法的不同温度和辐照度输入的简化光伏组件建模与分析

Norhaisam Ismail, Dalila Mat Said, S. Mirsaeidi, N. Ahmad, N. Rosmin, S. M. Hussin, Siti Aisyah Abd Wahid, Zaris Izzati Mohd Yassin, Nur Hazirah Binti Zainal
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摘要

光伏(PV)系统为全球能源危机提供了一个潜在的解决方案。太阳能光伏组件的建模研究和分析是提高光伏系统用户友好性、提高可靠性和性能的重要任务。然而,光伏组件的输出特性是非线性的,因为它们依赖于环境条件,如太阳辐照度和温度,以及当地气候条件,如湿度和风力。所使用的各种方法都有一些共同的差距,因为缺乏逐步的过程,这导致理解困难。事实上,PV模块的精确建模对于更好地理解其操作和输出特性非常重要,因为模拟可以用于了解PV模块在各种操作条件下的行为。该项目的目标是首先,使用Matlab/Simulink构建和建模太阳能光伏(PV)模块算法。其次,模拟和分析了模型在不同温度和辐照度输入条件下的行为。第三,通过将输出特性与制造商的数据表进行比较,验证从模拟中获得的结果。采用Matlab/Simulink软件对光伏组件进行了详细的建模。该模型是由单二极管等效电路模型的方程推导而来的。PV模块模块是一个五参数模型,使用发光电流源(IL)、二极管、串联电阻(Rs)和分流电阻(Rsh)来表示模块的辐照度和温度相关的I-V和P-V特性。该方法提供了一种简单、可靠、高度灵活的方法,使光伏组件适应不同的环境条件,如辐照度、温度和太阳能组件的物理参数,如电阻、电流、电压、理想因数等。仿真结果和得到的数据表明,利用Matlab/Simulink开发和仿真的模块在不同的温度和辐照度输入值下,与实际的光伏模块基本一致,操作方便。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling and Analysis of Simplified PV Module With Various Temperature And Irradiance Inputs Using MATLAB Simulink Algorithm
Photovoltaic (PV) systems offer a potential solution to the global energy crisis. Modeling study and analysis involving solar PV module is an important task in a PV system to be more user friendly, improve reliability and performance. However, the output characteristics of PV modules are nonlinear, since they are dependent on environmental conditions such as solar irradiance and temperature, as well as local climate conditions such as humidity and wind. The various methods used have some common gaps as the absence of step-by-step procedure which causes difficulties to understand. Indeed, accurate modeling of PV modules is important to provide a better understanding of their operation and output characteristics, since simulations can be used to understand the behavior of PV modules under various operating conditions. The objective of the project is first, to build and model a solar photovoltaic (PV) module algorithm using Matlab/Simulink. Second, to simulate and analyze the behavior of the model in various temperature and irradiance input conditions. Third, to validate the results obtained from the simulations by comparing the output characteristics with the manufacturer’s datasheet. The methodology used by presenting the principles of detailed modeling of PV modules using Matlab/Simulink software. The constructed model is taken from the equations obtained from the equivalent circuit of a single diode model. The PV Module block is a five-parameter model using a light-generated current source (IL), diode, series resistance (Rs), and shunt resistance (Rsh) to represent the irradiance and temperature-dependent I-V and P-V characteristics of the module. This method provides a simple, reliable, and highly flexible method to adapt PV modules to different environmental conditions such as irradiance, temperature and physical parameters of the solar modules such as resistance, current, voltage, ideality factors and others. The simulation results and data obtained show that the block module developed and simulated using Matlab/Simulink with various input values ​​of temperature and irradiance is almost identical to the real PV module and user-friendly.
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