首页> 外文会议>Proceedings of ISES Solar World Congress 2007: Solar Energy and Human Settlement >RELIABLE CONCENTRATED PHOTOVOLTAIC SYSTEM WITH COMPOUND CONCENTRATOR
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RELIABLE CONCENTRATED PHOTOVOLTAIC SYSTEM WITH COMPOUND CONCENTRATOR

机译:带有复合浓缩器的可靠的浓缩光伏系统

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Concentrated photovoltaic systems (CPVSs) draw more and more attention because of high photovoltaic conversion efficiency, low consumption of solar cell, and low cost of power generation. However, the fallibility of the tracker in such systems has hindered their practical application for more than twenty years. The tracker is indispensable for a CPVS since only normal-incident sunlight can be focused on the solar cell chips, even a slight deviation of incident light will result in a significant loss of solar radiation, and hence a distinct decrease in electricity output. Generally, the more accurate the tracker is, the more reliable the system is. However, it is not exactly the case for a CPVS reliability, because the more accurate the tracker is, the better environment it demands. A CPVS is usually has to subjected to harsh environmental conditions, such as strong wind, heavy rain or snow, and huge changes of temperature, which leads to the invalidation of the system’s high-accuracy tracker. Hence, the reliability of a CPVS cannot be improved only by enhancing the tracker’s accuracy. In this paper, a novel compound concentrator, combination of Fresnel lens and photo-funnel, has been adopted in a prototype CPVS. Test results show that the compound concentrator can relax the angle tolerance from one tenth to five degrees of arc at 400 suns, which can help a CPVS endure serious environment and remain its reliability over long period. The CPVS with compound concentrator is attractive for commercial application.
机译:由于光伏转换效率高,太阳能电池的消耗低以及发电成本低,集中式光伏系统(CPVS)受到越来越多的关注。然而,跟踪器在这种系统中的易失性已经阻碍了其二十多年的实际应用。对于CPVS,跟踪器是必不可少的,因为只有正常入射的太阳光可以聚焦在太阳能电池芯片上,即使入射光的轻微偏离也会导致太阳辐射的大量损失,从而导致电力输出的明显下降。通常,跟踪器越精确,系统越可靠。但是,CPVS可靠性并非完全如此,因为跟踪器越精确,它所要求的环境就越好。 CPVS通常必须经受恶劣的环境条件,例如强风,大雨或大雪以及温度的巨大变化,从而导致系统的高精度跟踪器失效。因此,仅通过提高跟踪器的准确性就无法提高CPVS的可靠性。本文在CPVS原型中采用了一种新型复合聚光器,将菲涅耳透镜和光漏斗结合在一起。测试结果表明,复合聚光器在400个太阳下可以将弧度的角度公差从十分之一放宽到五度,这可以帮助CPVS承受恶劣的环境并长期保持其可靠性。带复合浓缩器的CPVS在商业应用中具有吸引力。

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