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Technology advances needed for photovoltaics to achieve widespread grid price parity

机译:光伏技术需要实现广泛的电网价格均等的技术进步

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To quantify the potential value of technological advances to the photovoltaics (PV) sector, this paper examines the impact of changes to key PV module and system parameters on the levelized cost of energy (LCOE). The parameters selected include module manufacturing cost, efficiency, degradation rate, and service lifetime. NREL's System Advisor Model (SAM) is used to calculate the lifecycle cost per kilowatt-hour (kWh) for residential, commercial, and utility scale PV systems within the contiguous United States, with a focus on utility scale. Different technological pathways are illustrated that may achieve the Department of Energy's SunShot goal of PV electricity that is at grid price parity with conventional electricity sources. In addition, the impacts on the 2015 baseline LCOE due to changes to each parameter are shown. These results may be used to identify research directions with the greatest potential to impact the cost of PV electricity. Copyright (c) 2016 John Wiley & Sons, Ltd.
机译:为了量化光伏(PV)领域技术进步的潜在价值,本文研究了关键PV组件和系统参数的变化对能源平均成本(LCOE)的影响。选择的参数包括模块制造成本,效率,降级率和使用寿命。 NREL的系统顾问模型(SAM)用于计算美国连续的住宅,商业和公用事业规模光伏系统的每千瓦时(kWh)的生命周期成本,重点是公用事业规模。说明了可以实现能源部的SunShot PV电力目标的不同技术途径,该目标与传统电源的电网价格持平。此外,还显示了由于每个参数的更改而对2015年基准LCOE的影响。这些结果可用于确定最有可能影响PV电力成本的研究方向。版权所有(c)2016 John Wiley&Sons,Ltd.

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