Solar panel sensor modeling and fiscal modeling

S. Griffin, T. Wyatt
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Abstract

A solar panel based sensor for automatic recording of practical insolation data at North Latitude 35.122196° and West Longitude -89.934553° has been developed. To implement this, a detailed, application oriented, solar panel model has been tested. This modeling has been divided into categories based on both technological characteristics such as cell and panel construction and disciple orientation such as thermal, electrical, optical, and mechanical. Emphasis has been on performance at maximum collection efficiency. This document addresses efficiency from the electrical output side rather than the optical input side. Emphasis is on effective coupling to load, balanced against collection efficiencies, so that sensor calibration constant is nearly constant. Partial obscuration and cost impacts are addressed.
太阳能电池板传感器建模和财政建模
研制了一种用于自动记录北纬35.122196°和西经-89.934553°实际日照数据的太阳能电池板传感器。为了实现这一点,我们测试了一个详细的、面向应用的太阳能电池板模型。这种建模根据技术特征(如单元和面板结构)和学科方向(如热、电、光学和机械)分为几类。重点是在最大限度地提高收集效率方面的表现。本文档从电输出端而不是光输入端讨论效率。重点是有效耦合负载,平衡收集效率,使传感器校准常数几乎是恒定的。解决了部分遮挡和成本影响。
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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