Location specific PV yield and loss simulation based on module stack and layout

A. Thomson, M. Ernst, I. Haedrich
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Abstract

PV cell and module manufactures optimise their products according to standard test conditions. The key parameter for financing of a solar farm is yield under field or realistic conditions. Field testing modules is expensive and time consuming. Hence we develop a methodology for simulating PV module yield based on the optical, thermal and electrical properties of the components and their stack ands layout. With our procedure we will model optical, thermal and electrical losses under realistic conditions for standard, half cell and encapsulant free modules in different locations. For now we quantify the losses for a standard module installed in Melbourne on a cloudy day. The largest loss factor is electrical, as the module voltage decreases with low irradiance.
基于模块堆叠和布局的特定位置光伏产损模拟
光伏电池和组件制造商根据标准测试条件优化其产品。太阳能发电场融资的关键参数是田间或实际条件下的产量。现场测试模块既昂贵又耗时。因此,我们开发了一种基于组件的光学,热学和电学特性及其堆叠布局来模拟光伏组件成品率的方法。通过我们的程序,我们将在不同位置的标准,半电池和无密封剂模块的实际条件下模拟光学,热和电损耗。现在,我们量化了在阴天安装在墨尔本的一个标准模块的损失。最大的损耗因子是电,因为模块电压随着辐照度的降低而降低。
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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