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Rough and Straightforward Estimation of the Mismatching Loss by Partial Shading of the PV Modules Installed on an Urban Area or Car-Roof

机译:通过部分遮蔽市区或车顶上的光伏模块,粗略而直接地估算失配损耗

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Solar panels used for EV charging stations and car-roof PV are often partially shaded and lead to substantial energy loss. It is known that this mismatching loss can be reduced by increasing the number of parallel strings. First, a probability model was developed using a one-year solar irradiance monitoring around the car body in 5 directions. The developed model successfully matched to the measured solar resource in each direction and succeeded to quantify the probability of the partial shading on the car. Another related issue of the inherent mismatching loss of the car-roof PV is non-uniform illumination caused by the curved shape of the panel. This can also be modeled by ray-tracing simulation. Then, we calculated the PV output affected by mismatching due to various sunlight patterns and partial shade patterns by Monte Carlo method. It was found that the average efficiency asymptotically approached 1 - 1/N (N is the number of strings). We also examined the relationship between partial shade quantity and power generation loss in a 30 kW solar system array and verified the above model.
机译:用于EV充电站和车顶PV的太阳能电池板通常被部分遮挡并导致大量能量损失。已知可以通过增加并行串的数量来减少这种失配损耗。首先,通过对车身周围5个方向的一年太阳辐照度监测,建立了概率模型。所开发的模型成功地匹配了各个方向上测得的太阳能,并且成功地量化了汽车局部遮挡的可能性。车顶PV固有失配损失的另一个相关问题是由面板的弯曲形状引起的照明不均匀。这也可以通过光线跟踪模拟来建模。然后,我们通过蒙特卡洛方法计算了由于各种阳光模式和局部阴影模式而导致的失配所影响的光伏输出。发现平均效率渐近地接近1-1 / N(N是弦数)。我们还研究了30 kW太阳系阵列中部分阴影量与发电损耗之间的关系,并验证了上述模型。

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