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首页> 外文期刊>Photovoltaics, IEEE Journal of >Status of C3MJ+ and C4MJ Production Concentrator Solar Cells at Spectrolab
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Status of C3MJ+ and C4MJ Production Concentrator Solar Cells at Spectrolab

机译:C3MJ +和C4MJ生产集中器太阳能电池在Spectrolab的状况

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Multijunction solar cells based on III–V semiconductors, having recently demonstrated 43.5%, remain the world''s most efficient solar cells, and the preferred technology in point-focus and dense-array concentrator photovoltaic (CPV) system architectures. The year 2011 proved to be a pivotal year for CPV technology, with multiple power plant installations in the megawatt to tens of megawatt scale. Spectrolab is working closely with CPV system manufacturers to provide a reliable and well-characterized cell technology, in volumes commensurate with this increasing demand. The evolutionary C3MJ+ and the C4MJ cell technologies are the latest in a sequence of CPV solar cell designs, with conversion efficiencies approaching or greater than 40%. Both technologies have completed detailed characterization and qualification programs, including accelerated laboratory and (for C4MJ) on-sun reliability testing, and have entered into high volume production at Spectrolab''s manufacturing facility in Sylmar, CA. The metamorphic C4MJ technology affords new opportunities to optimize cell designs, taking into consideration both the spectral optical transmittance of a particular CPV system and the installation site''s average solar resource over a typical meteorological year.
机译:基于III-V半导体的多结太阳能电池,最近已证明有43.5%的应用,仍然是世界上效率最高的太阳能电池,并且是点聚焦和密集阵列聚光光伏(CPV)系统架构中的首选技术。事实证明,对于CPV技术而言,2011年是关键的一年,多个电厂的安装功率都在兆瓦到数十兆瓦之间。 Spectrolab与CPV系统制造商紧密合作,以提供可靠且特性良好的电池技术,其数量与不断增长的需求相称。进化的C3MJ +和C4MJ电池技术是一系列CPV太阳能电池设计中的最新技术,其转换效率接近或超过40%。两种技术均已完成详细的表征和鉴定计划,包括加速实验室和(针对C4MJ的)日光可靠性测试,并且已在位于加利福尼亚州Sylmar的Spectrolab的制造工厂进行了大批量生产。考虑到特定CPV系统的光谱光透射率和典型气象年份安装地点的平均太阳资源,变质C4MJ技术为优化电池设计提供了新的机会。

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