Dynamic model of photovoltaic module temperature as a function of atmospheric conditions

Q2 Earth and Planetary Sciences
J. Barry, D. Böttcher, K. Pfeilsticker, Anna Herman-Czezuch, N. Kimiaie, S. Meilinger, C. Schirrmeister, H. Deneke, Jonas Witthuhn, Felix Gödde
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引用次数: 4

Abstract

Abstract. The temperature of photovoltaic modules is modelled as a dynamic function of ambient temperature, shortwave and longwave irradiance and wind speed, in order to allow for a more accurate characterisation of their efficiency. A simple dynamic thermal model is developed by extending an existing parametric steady-state model using an exponential smoothing kernel to include the effect of the heat capacity of the system. The four parameters of the model are fitted to measured data from three photovoltaic systems in the Allgau region in Germany using non-linear optimisation. The dynamic model reduces the root-mean-square error between measured and modelled module temperature to 1.58 K on average, compared to 3.03 K for the steady-state model, whereas the maximum instantaneous error is reduced from 20.02 to 6.58 K.
光伏组件温度随大气条件变化的动态模型
摘要光伏组件的温度被建模为环境温度、短波和长波辐照度以及风速的动态函数,以便更准确地描述其效率。利用指数平滑核扩展已有的参数稳态模型,建立了包含系统热容影响的简单动态热模型。采用非线性优化方法,将模型的四个参数拟合到德国Allgau地区三个光伏系统的实测数据中。动态模型将测量和建模模块温度之间的均方根误差平均降低到1.58 K,而稳态模型的均方根误差为3.03 K,而最大瞬时误差从20.02 K降低到6.58 K。
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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来源期刊
Advances in Science and Research
Advances in Science and Research Earth and Planetary Sciences-Geophysics
CiteScore
4.10
自引率
0.00%
发文量
13
审稿时长
22 weeks
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