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Economic competitiveness of U.S. utility-scale photovoltaics systems in 2015: Regional cost modeling of installed cost ($/W) and LCOE ($/kWh)

机译:2015年美国公用事业规模光伏系统的经济竞争力:装机成本($ / W)和LCOE($ / kWh)的区域成本模型

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Utility-scale photovoltaics (PV) system growth is largely driven by the economic metrics of total installed costs and levelized cost of electricity (LCOE), which differ by region. This study details regional cost factors, including environment (wind speed and snow loads), labor costs, material costs, sales taxes, and permitting costs using a new system-level bottom-up cost modeling approach. We use this model to identify regional all-in PV installed costs for fixed-tilt and one-axis tracker systems in the United States with consideration of union and non-union labor costs in 2015. LCOEs using those regional installed costs are then modeled and spatially presented. Finally, we assess the cost reduction opportunities of increasing module conversion efficiencies on PV system costs in order to indicate the possible economic impacts of module technology advancements and help future research and development (R&D) effects in the context of U.S. SunShot targets.
机译:公用事业规模光伏(PV)系统的增长在很大程度上取决于总安装成本和电力平均成本(LCOE)的经济指标,这些指标因地区而异。本研究使用新的系统级自下而上的成本建模方法,详细说明了区域成本因素,包括环境(风速和雪荷载),人工成本,材料成本,营业税和许可成本。考虑到2015年的工会和非工会劳工成本,我们使用该模型来确定美国固定倾斜和单轴跟踪器系统的区域全部PV安装成本。然后,对使用这些区域安装成本的LCOE进行建模和建模。在空间上呈现。最后,我们评估提高光伏组件成本的组件转换效率所带来的降低成本的机会,以表明组件技术进步可能带来的经济影响,并在美国SunShot目标的背景下帮助未来的研发(R&D)效果。

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