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An analysis of glass-glass CIGS manufacturing costs

机译:玻璃CIGS玻璃制造成本分析

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This article examines current cost drivers and potential avenues to reduced cost for monolithic, glass glass Cu(In,Ga)(Se,S)(2) (CIGS) modules by constructing a comprehensive bottom-up cost model. For a reference case where sputtering plus batch sulfurization after selenization (SAS) is employed, we compute a manufacturing cost of $69/m(2) if the modules are made in the United States at a 1 GW/year production volume. At 14% module efficiency, this corresponds to a manufacturing cost of $0.49/W-DC and a minimum sustainable price (MSP) of $0.67/W-DC. We estimate that MSP could vary within 20% of this value given the range of quoted input prices, and existing variations in module design, manufacturing processes, and manufacturing location. Potential for reduction in manufacturing costs to below $0.40/W-DC may be possible if average production module efficiencies can be increased above 17% without increasing $/m(2) costs; even lower costs could be achieved if $/m(2) costs could be reduced, particularly via innovations in the CIGS deposition process or balance-of-module elements. We present the impact on cost of regional factors, CIGS deposition method, device design, and price fluctuations. One metric of competitiveness-levelized cost of energy (LCOE) - is also assessed for several U.S. locations and compared to that of standard multi-crystalline silicon (m(c-Si)) and cadmium telluride (CdTe). (C) 2016 Elsevier B.V. All rights reserved.
机译:本文通过构建一个全面的自下而上的成本模型,研究了当前的成本动因和降低整体玻璃单铜(In,Ga)(Se,S)(2)(CIGS)模块成本的潜在途径。对于使用溅射加上硒化后分批硫化(SAS)的参考案例,如果模块是在美国以1 GW /年的生产量制造的,则我们计算的制造成本为$ 69 / m(2)。以14%的模块效率,这相当于0.49美元/ W-DC的制造成本和0.67美元/ W-DC的最低可持续价格(MSP)。根据给定的输入价格范围以及模块设计,制造工艺和制造地点的现有变化,我们估计MSP可能在该值的20%范围内变化。如果在不增加$ / m(2)成本的情况下,平均生产模块效率可以提高到17%以上,则有可能将制造成本降低到$ 0.40 / W-DC以下。如果可以减少$ / m(2)的成本,甚至可以实现更低的成本,尤其是通过CIGS沉积工艺或模块平衡元素的创新。我们介绍了对区域因素成本,CIGS沉积方法,设备设计和价格波动的影响。还评估了美国几个地点的竞争力水平的能源成本(LCOE)指标,并将其与标准多晶硅(m(c-Si))和碲化镉(CdTe)比较。 (C)2016 Elsevier B.V.保留所有权利。

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