恒定电负荷下光电太阳能电池板的建模与分析

Elias M. Salilih, Y. T. Birhane
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引用次数: 18

摘要

本文介绍了在热带地区天气条件下恒定电负荷(2Ω, 4Ω, 6Ω和8Ω)下典型光伏面板/模块(京瓷200GT)的电性能建模。考虑了位于埃塞俄比亚东部地区的吉吉加市(北纬9.35°,东经42.8°)的具体情况。光伏组件的电特性是在详细的数值算法的基础上确定的,该算法是在回顾文献的试验数值技术的基础上设计的。通过图形技术对光伏组件电气性能每小时变化的总体评估,确定每个负载下光伏组件在电压与电流平面上的工作点,并对每个负载下光伏面板的性能进行比较。在1月份的11天(12天)中,4Ω电力负载导致PV面板的每日最高能量输出,但在最后一天,它导致相对于其他两个电力负载(即6Ω和8Ω电力负载)的性能较差。
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 Photo-Voltaic Solar Panel under Constant Electric Load
This paper presents modelling electrical performance of a typical PV panel/module (which is Kyocera 200GT) for constant electric loads (which are 2Ω, 4Ω, 6Ω, and 8Ω) under weather condition of a tropical region. The specific case of the city Jigjiga (9.35°N,42.8°E), located in the Eastern region of Ethiopia is considered. Electrical characteristics of the PV module are determined on the basis of detailed numerical algorithm, which was designed based on tested numerical technique from reviewed articles. The overall evaluation of the hourly variation in the electrical performance of the PV module is done by means of graphical technique, which determines the operating point of the PV module on voltage vs. current plane for each load, and the performance of the PV panel is compared for each load. The 4Ω electric load resulted in highest daily energy output of the PV panel on a daily basis for 11 days of the month of January (out of 12 considered days), but in the last day it resulted in a poorer performance with respect to the other two electrical loads (i.e., 6Ω and 8Ω electric loads).
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