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Sun-tracking method for correcting self-weight induced optical misalignment in dense-array concentrator photovoltaic system

机译:用于校正致密阵列集中光系统中自重诱导光学错位的太阳跟踪方法

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To overcome self-weight induced optical misalignment has always been a great challenge in optimizing electrical performance of dense-array concentrator photovoltaic (CPV) system. In this article, the correction of elevation angle in the sun-tracking algorithm of non-imaging dish concentrator is proposed for recovering the deviated solar flux distribution caused by the structural deflection induced optical misalignment. Numerical simulation via ray-tracing technique has been employed to analyze the concentrated flux distribution and the simulated result has shown that the proposed method is proficient to restore the deviated solar flux distribution back to the center of the receiver for any elevation angle in the dense-array CPV system.
机译:为了克服自我重量诱导的光学错位,在优化致密阵列聚光器光伏(CPV)系统的电气性能方面一直是一项巨大挑战。在本文中,提出了非成像盘集中器的太阳跟踪算法中的仰角校正,用于恢复由结构偏转引起的光学错位引起的偏离太阳能通量分布。已经采用过光线跟踪技术的数值模拟来分析集中的助熔剂分布,并且模拟结果表明,该方法精通恢复偏离的太阳能通量分布回到接收器的中心,以便密集的任何仰角阵列CPV系统。

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