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Characteristic Analysis of Photovoltaic On-Grid System In Tropical Region For Weather-Corrected Performance Ratio Calculation Method Implementation

机译:热带地区光伏并网系统特性的天气校正性能比计算方法实现

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Indonesia has different weather factors than the subtropical climate that influences the performance indicators of photovoltaic systems. One of them is performance ratio that is affected by temperature factors. NREL proposes calculation method of Weather-Corrected Performance Ratio for correcting factors (temperature) in calculation performance ratio of photovoltaic systems. However, the implementation of this method in real operating condition of photovoltaic system especially in the tropics, has not received special attention. In addition, temperature coefficient of power photovoltaic (δ) in Standard Test Condition, is used in the calculation method may be different in real operating condition. This study was conducted to determine the effects of weather-corrected performance ratio method and to know characteristic of temperature coefficient of power photovoltaic (δ) as factors in of weather-corrected performance ratio method, in real operating condition especially in tropics. Through analysis photovoltaic system data from the data logger it is found that the range values of weather-corrected performance ratio are greater than conventional methods, with a maximum increase of 2.43%. Moreover it is found that because average temperature of tropical climate is higher than subtropical climate, it makes the percentage of power decrease to rise in temperature (δ) in tropical climate is higher than subtropical climate.
机译:印度尼西亚的气候因素与亚热带气候不同,这会影响光伏系统的性能指标。其中之一是受温度因素影响的性能比。 NREL提出了一种天气校正性能比的计算方法,以校正光伏系统计算性能比中的因素(温度)。然而,该方法在光伏系统的实际运行条件下,特别是在热带地区的实现,并未受到特别关注。另外,在标准测试条件下使用的功率光伏温度系数(δ),在计算方法上可能与实际工作条件有所不同。这项研究旨在确定天气校正后的性能比方法的效果,并了解功率光伏温度系数(δ)作为天气校正后的性能比方法的因素,尤其是在热带地区的实际工作条件下。通过分析来自数据记录器的光伏系统数据,发现经天气校正的性能比的范围值大于常规方法,最大增加了2.43%。此外,由于热带气候的平均温度高于亚热带气候,因此使得功率降低的百分比在热带气候中的温度升高(δ)高于亚热带气候。

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