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Cost-Efficiency Trade-off of Silicon Solar Cells for use in Perovskite-Silicon Tandem Modules

机译:用于钙钛矿-硅串联模块的硅太阳能电池的成本效益折衷

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We use techno-economic analysis to examine the potential of low-cost, lower-efficiency multi-crystalline silicon bottom cells in perovskite-silicon tandem solar cells, compared to high-efficiency, higher-cost mono-crystalline silicon cells. Two representative tandems, a low-cost and a high-efficiency device, are examined and compared based on levelized cost of electricity (LCOE) in current and future utility and residential systems. This analysis is then extended to explore the impact of top cell bandgap and top cell module cost, thus providing broader insight into the effect of variations and uncertainty in the properties of the perovskite top cell, as well as yielding implications for the use of other materials, such as cadmium telluride, in a tandem solar module. A clear case for the value of low-cost silicon for use as a silicon bottom cell is demonstrated.
机译:我们使用技术经济分析来研究与高效,成本更高的单晶硅电池相比,钙钛矿硅串联太阳能电池中低成本,低效率的多晶硅底部电池的潜力。根据当前和将来的公用事业和住宅系统中的平均电费(LCOE),检查并比较了两种代表性的低成本,高效率设备。然后扩展该分析以探索顶部电池带隙和顶部电池模块成本的影响,从而提供更广泛的洞察力,了解钙钛矿顶部电池的性能变化和不确定性,以及对其他材料的使用产生影响,例如串联太阳能电池组件中的碲化镉等。展示了用作硅底部电池的低成本硅的明确案例。

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