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A Quantitative Analysis of Battery Energy Storage System Integration Solutions into Isolated Hybrid Generation Networks: Application to Phu Quy Island

机译:隔离混合生成网络电池储能系统集成解决方案的定量分析:PHU Quy Island的应用

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For hybrid energy systems utilizing renewable energy sources such as the power grid of Phu Quy island - Binh Thuan province, the integration of battery energy storage system (BESS) could be seen as a practical solution with remarkable advantages including economic and technical preeminence. BESS contributes to increasing renewable energy penetration, enhancing system stability and reducing the dependence on fossil fuel generation. However, the integration of BESS into an existing hybrid power system also necessitates to conduct a quantitative analysis of the performance of different solutions. This study investigates operational data of Phu Quy power grid for one year, evaluates solar energy potential and proposes a proper BESS integration solution based on a careful quantitative analysis. The simulation results show that selection of larger BESS capacity increases penetration rate of renewable energy. Nevertheless, of all proposed BESS integrated scenarios, renewable energy penetration rate as well as diesel consumption do not show a major difference. Therefore, choosing BESS also needs to consider the load capacity and time required to start and interconnect standby diesel generators.
机译:对于利用Phu Quy Island的电网等可再生能源的混合能源系统,电池储能系统(BESS)的整合可以被视为具有显着优势的实用解决方案,包括经济和技术优势。贝尔斯有助于增加可再生能源渗透,提高系统稳定性,降低对化石燃料产生的依赖。然而,BESS中的集成到现有的混合动力系统中也需要对不同解决方案的性能进行定量分析。本研究调查了PHU波奇电网运营数据一年,评估太阳能潜力,并提出了一种基于仔细定量分析的合适的BESS集成解决方案。仿真结果表明,较大的贝丝容量的选择会增加可再生能源的穿透率。尽管如此,所有提议的BESS集成场景,可再生能源渗透率以及柴油消耗并没有显示出主要区别。因此,选择BESS还需要考虑启动和互连备用柴油发电机所需的负载能力和时间。

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