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Bifacial Photovoltaic Module Energy Yield Calculation and Analysis

机译:双面光伏组件发电量的计算与分析

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Anew computationally-efficient algorithm has been developed for the evaluation of annual energy yields from bifacial photovoltaic panels. The model accounts for detailed anisotropic sky dome and albedo ray tracing with directional reflection, self-shading, and rack shading. The illumination profiles over both front and rear faces of bifacial and mono-facial panels provide realistic solar cell and panel performance calculations over various system configurations. Both landscape panel orientation and panel wiring with multiple parallel horizontal strings provide higher output powers, up to >3% for low ground clearances. Representative conditions for Ottawa, Ontario, Canada, resulted in up to 18% bifacial gain in annual energy yield, while instantaneous power production increased by 13-35% when sunny and 40-70% when cloudy.
机译:已经开发了一种新的计算有效算法,用于评估双面光伏板的年发电量。该模型说明了具有定向反射,自阴影和机架阴影的详细的各向异性天穹和反照率射线跟踪。双面和单面面板的正面和背面上的照明轮廓可在各种系统配置上提供逼真的太阳能电池和面板性能计算。横向面板方向和具有多个平行水平线的面板布线都提供了更高的输出功率,对于低离地间隙而言,高达> 3%。加拿大安大略省渥太华的代表性条件使双面能源年产量增加了18%,而晴天时的瞬时发电量增长了13-35%,多云时的瞬时发电量增长了40-70%。

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