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An irradiance-neutral view on the competitiveness of life-cycle cost of PV rooftop systems across cities

机译:关于城市光伏屋顶系统生命周期成本竞争力的辐照度 - 中性视图

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When calculating the life-cycle cost of solar electricity, there are three main factors that influence the outcome: the irradiance conditions, the initial investment cost, and the cost of financing. This work compares the cost of solar electricity in Singapore with those in other major cities around the world: Kuala Lumpur, Jakarta, Bangkok, Manila, Phnom Penh, Beijing, Delhi, Tokyo, Zurich, Munich and San Francisco. It computes an "adjusted" levelised cost of electricity (LCOE), which compares the competitiveness "as if they all had the same irradiance conditions ("irradiance-neutral"). This should give policy makers a view where their cities stand in terms of investment cost and financing, which they could actively influence (in contrast to the solar resource). Taking into account its lowest system cost and highest irradiance, Delhi leads the "un-adjusted" LCOE ranking, followed by Bangkok and Singapore. After "adjusting" the LCOE, however, Beijing would rank first, with Munich and Singapore being second and third, respectively. While Delhi drops to the fourth position, Munich, despite having the second worst irradiance conditions, improves significantly due to its low interest rate environment. Besides system cost, the study shows that accessible financing at low interest rates remains an important driver to accelerate the adoption of solar energy in larger scale.
机译:当计算太阳能发电的生命周期成本,还有一些影响结果的三个主要因素:光照条件,初始投资成本和融资成本。这项工作比较太阳能发电在新加坡与世界各地的其他主要城市的成本:吉隆坡,雅加达,曼谷,马尼拉,金边,北京,新德里,东京,苏黎世,慕尼黑和旧金山。它计算电费的“调整”平准化成本(LCOE),其中比较竞争力“就好像它们都具有相同的光照条件(”辐照中性“)。这应该给决策者一个观点,他们的城市站在方面投资成本和融资,他们可以积极影响(相比之下,太阳能资源)。考虑到其最低的系统成本和最高的辐照度,德里领导的“未调整” LCOE排名,其次是曼谷和新加坡。“调整后“的LCOE,然而,北京将排在第一位,与德国慕尼黑和新加坡分别为第二和第三,虽然德里下降到第四位,慕尼黑,尽管有第二个最差的光照条件,显著提高,由于其低利率环境。除了系统的成本,研究表明,在低利率融资的访问仍然是一个重要的驱动程序,以加速太阳能在较大规模。

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