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Rectifying structural deflection effect of large solar concentrator via correction of sun-tracking angle in the concentrator photovoltaic system

机译:通过校正聚光光伏系统中太阳跟踪角来纠正大型聚光器的结构偏转效应

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The influence of self-weight structural deflection of large solar concentrator has caused significant impact to the quality of concentrated solar flux. The resulted negative outcomes from structural deflection, including image distortion and pointing error, can deteriorate the electrical power generated by dense array concentrator photovoltaic (CPV) module located at the target of large solar concentrator. In this article, a novel corrective measure for sun-tracking angle is proposed to rectify the structural deflection effect on the large solar concentrator and hence to optimize the electrical output power of dense-array CPV module. The methodology of the proposed corrective measure has been formulated and discussed in details using numerical simulation via ray-tracing technique. The simulated result has shown that the proposed method is proficient to recover the deviated and distorted solar flux distribution in the receiver without affecting the maximum solar concentration ratio and hence to reduce the electrical power loss. For the overall gain, the maximum output power has been increased from 3562 W to 4030 W and the electrical power loss has been reduced from 12.4% to 0.8% at elevation angle of 60 in the dense-array CPV system. (C) 2017 Elsevier Ltd. All rights reserved.
机译:大型太阳能聚光器的自重结构变形的影响对聚光太阳能通量的质量产生了重大影响。由结构偏转产生的负面结果,包括图像失真和指向误差,可能会使位于大型太阳能集中器目标处的密集阵列集中器光伏(CPV)模块产生的电功率恶化。本文提出了一种新的太阳跟踪角校正措施,以纠正大型太阳能聚光器的结构偏转效应,从而优化密集阵列CPV模块的电输出功率。通过射线追踪技术的数值模拟,已经制定并详细讨论了所提出的纠正措施的方法。仿真结果表明,所提出的方法能够有效地恢复接收器中太阳光通量的偏差和畸变,而不会影响最大太阳集中率,从而减少了电力损耗。对于总增益,在密集阵列CPV系统中,在仰角为60时,最大输出功率已从3562 W增加到4030 W,电功率损耗从12.4%降低到0.8%。 (C)2017 Elsevier Ltd.保留所有权利。

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