Electric-thermal photovoltaic model characteristics validation

X. Mai, Jeehoon Jung, Katherine A. Kim
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Abstract

This work introduces a electric-thermal model for a photovoltaic (PV) cell which combines electrical and thermal parameters, and also incorporates dynamic characteristics and accurate modeling in the reverse-bias region. Incoming irradiance and ambient temperature are used to calculate the PV cell temperature based on a five-layer thermal model. The cell temperature in the electrical model is updated according to the thermal model to accurately adjust the PV cell output electrical characteristics. To test and validate the electrical and thermal characteristics of the PV cell, a custom setup was built that allows temperature measurement at the PV cell and glass surfaces. Performance of the electric-thermal model in both forward- and reverse-bias region is verified using experimental data in realistic scenarios. This PV model can be scaled up and used to simulate PV systems in a wide variety of applications, extreme environmental conditions, and fault conditions.
电-热光伏模型特性验证
本文介绍了光伏电池的电-热模型,该模型结合了电学和热参数,并结合了动态特性和反向偏置区域的精确建模。基于五层热模型,利用入射辐照度和环境温度计算PV电池温度。根据热模型更新电模型中的电池温度,准确调整PV电池输出电特性。为了测试和验证PV电池的电特性和热特性,我们建立了一个定制的设置,可以测量PV电池和玻璃表面的温度。利用实验数据验证了电热模型在正反偏区域的性能。该PV模型可以按比例放大,并用于模拟各种应用、极端环境条件和故障条件下的PV系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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