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Techno-economic analysis of battery storage and curtailment in a distribution grid with high PV penetration

机译:高PV渗透率的配电网中电池存储和缩减的技术经济分析

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Global solar PV capacity continues growing and this technology is a central solution for the global energy transition based on both economic growth and decarbonisation. PV technology is mainly being installed in distribution networks next to the consumption centres but it is an intermittent source which does not offer demand matching capability therefore calling for the redesign of distribution networks. In this study, battery storage and PV curtailment are compared as solutions for a residential area in Zurich (Switzerland) with large PV penetration from a techno-economic perspective. The techno-economic analysis focuses on the implications of the location (and related size) of battery storage and the type of curtailment control (fixed versus dynamic) for relevant stakeholders such as consumers and the distribution network operator. PV energy time-shift, the avoidance of PV curtailment and the upgrade deferral of the distribution transformer are the energy services provided by battery systems. Residential batteries offer more value for PV management than grid-scale solutions despite higher levelized cost but PV curtailment is the most cost-effective solution since only up to 3.2% of total PV electricity generation in energy terms should be curtailed for avoiding the transformer upgrading. We conclude that shared ownership models for PV curtailment could considerably improve its acceptance among consumers.
机译:全球太阳能光伏产能持续增长,这项技术是基于经济增长和脱碳的全球能源转型的核心解决方案。光伏技术主要安装在消耗中心附近的配电网络中,但是它是一种间歇性能源,不提供需求匹配功能,因此需要对配电网络进行重新设计。在这项研究中,从技术经济角度比较了在瑞士苏黎世拥有大量PV渗透的住宅区的解决方案,将电池存储和PV缩减作为比较。技术经济分析的重点是电池存储位置(和相关大小)的影响以及对消费者和配电网络运营商等相关利益相关者的限制控制类型(固定与动态)。光伏能源的时移,避免光伏能源的缩减以及配电变压器的升级延期都是电池系统提供的能源服务。尽管成本较高,但住宅电池为光伏管理提供了比电网规模解决方案更多的价值,但减少光伏发电是最具成本效益的解决方案,因为为了避免变压器升级,应减少能源总量中多达光伏发电的3.2%。我们得出结论,削减光伏的共享所有权模型可以大大提高其在消费者中的接受度。

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