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PV MARKET AND DIFFERENT MATERIALS BASED SOLAR CELLS:CURRENT STATUS AND FUTURE PROSPECTS

机译:基于太阳能光伏市场和不同材料的太阳能电池:现状和未来展望

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We review here the technical progress made in the past several years in the area of single- and polycrystalline thin film PV (photovoltaic) technologies based on Si, III-V, II-VI and I-III-VI2 semiconductors. PV electricity is one of the most options identified for sustainable providing of future energy requirements of the world. At the moment PV market is growing very rapidly by 30-40 % each year like telecommunication and computers. PV production was 520 MW in 2002. Si and GaAs single crystalline solar cells performed high efficiency very closed to theoretically predicted maximum value. Single - and polycrystalline Si solar cells still remain the predominant PV technology at the present. The cost of thes e solar cells is rather high (US$ 3.5-4.5). Thin film PV was developed as a means of substantially reducing the cost of solar cells. Remarkable progress has been achieved in this field for recent years. CdTe and Cu(In, Ga)Se_2 thin film solar cells performed a record efficiencies of 16-17% and 18-19% respectively. These values are highest for thin film solar cells. The thermodynamic limit of solar energy conversion to electricity is 93-95%. This goal can be achieved on thin film quantum well structures.
机译:我们在此回顾过去几年中基于Si,III-V,II-VI和I-III-VI2半导体的单晶和多晶薄膜PV(光伏)技术领域的技术进展。光伏电力是为可持续提供世界未来能源需求而确定的最多选择之一。目前,像电信和计算机一样,光伏市场每年以30-40%的速度快速增长。 2002年的光伏产量为520兆瓦。硅和砷化镓单晶太阳能电池的高效能非常接近理论上的预期最大值。目前,单晶硅和多晶硅Si太阳能电池仍然是主要的PV技术。这些太阳能电池的成本相当高(3.5-4.5美元)。薄膜PV被开发为实质上降低太阳能电池成本的手段。近年来,该领域已取得显着进展。 CdTe和Cu(In,Ga)Se_2薄膜太阳能电池的记录效率分别为16-17%和18-19%。这些值对于薄膜太阳能电池是最高的。太阳能转化为电能的热力学极限为93-95%。该目标可以在薄膜量子阱结构上实现。

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