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Estimation Method of Solar Cell Temperature Using Meteorological Data in Mega Solar Power Plant

机译:兆瓦级太阳能电站利用气象数据估算太阳能电池温度的方法

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摘要

The demands for diagnostics of solar power plants from remote places are increasing. We aim at constructing a diagnostic system which detects faulty modules automatically in mega solar power plants (MSPPs). The system utilizes measured data in power plants which can be obtained comparatively easily, such as string powers or solar irradiances. Solar irradiances are the most important factor which determines the magnitude of power generated in the cell, and cell temperatures are the second most important. However, cell temperatures are not usually measured directly in power plants. In this paper, we propose a new method to estimate the temperature of crystalline silicon solar cells which are most common at present, using measured data such as cell powers, solar irradiances atmospheric temperature, and wind speeds, which can be measured comparatively easily in power plants. We also evaluate our method by comparing estimated cell temperatures and surface temperatures of modules actually measured at Yoshinogari MSPP in Japan.
机译:从偏远地区对太阳能发电厂进行诊断的需求正在增加。我们旨在构建一个诊断系统,该系统可以自动检测大型太阳能发电厂(MSPP)中的故障模块。该系统利用发电厂中的测量数据,这些数据可以比较容易地获得,例如串功率或太阳辐照度。太阳辐射是最重要的因素,它决定了电池中产生的功率大小,而电池温度是第二重要的因素。但是,通常在发电厂中通常无法直接测量电池温度。在本文中,我们提出了一种新方法来估计当前最常见的晶体硅太阳能电池的温度,该方法使用诸如电池功率,太阳辐照度大气温度和风速等测量数据,这些功率可以相对容易地在功率中进行测量植物。我们还通过比较估计的电池温度和在日本Yoshinogari MSPP上实际测量的模块的表面温度来评估我们的方法。

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