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Sharing electricity storage at the community level: An empirical analysis of potential business models and barriers

机译:在社区一级共享电力存储:对潜在商业模式和障碍的实证分析

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摘要

More and more households are installing residential electricity storage systems to increase the self-consumption of electricity they produced. Some governments have accelerated this development through specific financial support schemes to offset the costs, which still remain high. Compared to the use of single-household systems, the sharing of mid-scale electricity storage systems in neighborhoods could reduce the Levelized Costs of Storage (LCOS). However, a model for the shared usage of storage by multiple households has yet to emerge. We investigated eight demonstration projects in Germany and Western Australia with capacities between 100 and 1100 kW h with respect to potential business models and barriers in a cross-case study based on document analyses and expert interviews. We found that models relying on the transmission of electricity from individual rooftop photovoltaics to a shared storage system through the public grid are facing significant regulatory barriers. Removing these policy barriers would enable a more efficient use of electricity storage systems. By contrast, projects relying on a less regulated microgrid managed by the administration or strata entities of multi household developments already seem promising under the current regulatory framework.
机译:越来越多的家庭正在安装住宅用电存储系统,以增加他们生产的电力的自耗。一些政府通过特定的财政支持计划来加速这一发展,以抵消仍然居高不下的成本。与使用单户系统相比,在社区中共享中型电力存储系统可以降低平均存储成本(LCOS)。但是,用于多个家庭共享存储的模型尚未出现。在基于文档分析和专家访谈的跨案例研究中,我们针对潜在的商业模式和障碍调查了德国和西澳大利亚州的8个示范项目,容量在100至1100 kWh之间。我们发现,依赖于通过公共电网从单个屋顶光伏电池到共享存储系统的电力传输的模型面临着巨大的监管障碍。消除这些政策障碍将使电力存储系统得到更有效的利用。相比之下,在当前的监管框架下,依靠由较少管理权的,由多户开发的行政部门或阶层实体管理的微电网的项目,似乎已经很有希望。

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