尼日利亚克罗斯河州Ogoja几内亚大草原大气下光伏系统性能日分析

Armstrong O. Njok, Effiong A. Archibong, Gertrude A. Fischer
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摘要

在尼日利亚克罗斯河州Ogoja进行了一项深入的实验调查,以每日分析在几内亚大草原大气下部署的家用光伏系统的性能。在本研究中,显示了一天中期望光伏(PV)组件获得最高效率的时间,以及面板温度将超过其最高工作电池温度的时间。该过程中使用的仪器包括数字太阳能功率计、数字湿度计、数字红外枪温度计和数字高精度光伏板最大功率点跟踪器(MPPT),用于跟踪和确定光伏模块产生的最大功率、电压和电流。结果表明,14:30达到了最高的效率水平,这表明14:30的气候条件对该地点部署家用光伏系统最有利。研究表明,在该位置,42%和400C的相对湿度和PV温度是最佳的PV效率水平。此外,研究地点的平均温度似乎令人鼓舞,除了1月和3月之外,面板温度很少超过电池的最高工作温度,在这两个月里,可能需要冷却机制来调节面板温度,以避免效率的巨大损失。海拔85米的高度使该地区相对适合接受强烈的太阳辐射。由于保证了90%的效率,该地点可以被视为适合通过光伏技术发电和安装用于商业目的的太阳能农场。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Diurnal Analysis of the Performance of Photovoltaic Systems under the Guinea Savannah Atmosphere in Ogoja, Cross Rivers State, Nigeria
A thorough experimental investigation was carried out to diurnally analyze the performance of photovoltaic systems deployed for domestic purposes under the guinea savannah atmosphere in Ogoja, Cross River State, Nigeria. In this study, the time of day to expect maximum efficiency from the photovoltaic (PV) module is shown, and the time of day that the panel temperature will exceed it maximum operating cell temperature is also shown. Instruments employed in the process include a digital solar power meter, digital hygrometer, digital infrared gun thermometer and a digital high precision photovoltaic panel maximum power point tracker (MPPT) to track and determine the maximum power, voltage and current produced by the photovoltaic module. The result shows that the highest level of efficiency was attained at 14:30 which reveals that the climatic condition which occurs at 14:30 is the most favorable for PV systems deployed for domestic purposes at the location. The study shows that 42% and 400C is the best relative humidity and PV temperature level for optimum PV efficiency at this location. In addition, the temperature of the study location appears encouraging as on average, the panel temperature will rarely exceed the maximum operating cell temperature for months besides January and march in which a cooling mechanism to regulate the panel temperature may be needed to avoid a massive loss in efficiency. An altitude of 85m above sea level makes the location relatively favorable for receiving intense solar radiation. With 90% efficiency assured, the location can be seen as suitable for generating electricity via PV technology and installing solar farms for commercial purposes.
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