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An Optimum Sizing Methodology for Combined Photovoltaic-Energy Storage Electricity Generation Configurations

机译:光伏储能组合发电结构的最佳尺寸确定方法

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The electrification of autonomous electrical networks is in most cases described by low quality of electricity available at very high production cost. Furthermore, autonomous electrical networks are subject to strict constraints posing serious limitations on the absorption of renewable energy sources (RES)-based electricity generation. To bypass these constraints and also to secure a more sustainable electricity supply status, the concept of combining photovoltaic (PV) power stations and energy storage systems comprises a promising solution for small scaled autonomous electrical networks, increasing the reliability of the local network as well. In this context, the present study is devoted in developing a complete methodology, able to define the size of an autonomous electricity generation system, based on the maximum available solar potential exploitation at minimum electricity generation cost. In addition special emphasis is given in order to select the most cost-efficient energy storage configuration available. According to the calculation results obtained, one may clearly state that an optimum sizing combination of a PV generator along with an appropriate energy storage system may significantly contribute on reducing the electricity generation cost in several island electrical systems, providing also abundant and high quality electricity without the environmental and macro-economic impacts of the oil-based thermal power stations.
机译:在大多数情况下,自主电网的电气化表现为电能质量低,生产成本高。此外,自治电网受到严格的约束,对基于可再生能源(RES)的发电的吸收提出了严重的限制。为了绕开这些限制并确保更可持续的供电状态,将光伏(PV)电站和储能系统结合起来的概念为小型自治电网提供了一种有前途的解决方案,同时也提高了本地网络的可靠性。在这种情况下,本研究致力于开发一种完整的方法,该方法能够以最小的发电成本为基础,利用最大的可用太阳势能来定义自主发电系统的规模。另外,为了选择可用的最具成本效益的能量存储配置,给出了特别的强调。根据获得的计算结果,可以清楚地表明,PV发电机与合适的储能系统的最佳尺寸组合可以显着地有助于降低多个岛屿电力系统的发电成本,同时还提供了丰富而优质的电力石油热电厂的环境和宏观经济影响。

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