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Integral approach to energy planning and electric grid assessment in a renewable energy technology integration for a 50/50 target applied to a small island

机译:可再生能源技术集成中能源计划和电网评估的整体方法,适用于将50/50目标应用于小岛

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This paper presents an energy planning, a grid assessment, and an economic analysis, considering three growing scenarios (Low, Base and High) in the electricity consumption, to supply the energy demand for a hybrid power system (Photovoltaics/Wind/Diesel/Battery) on a small island by 2050. The main aim of this study is to present a methodology to optimize and reduce the backup time of the battery bank, included from the hybrid power generation system selected. Also, it will compare four different battery technologies, simultaneously, without changes in the renewable energy targets settled in 50% until 2050 and without changes in the safe continuous operation of the grid. The methodology includes a grid assessment analysis to obtain a reliable, strong and safe operation response based on the grid code parameters, even in case of disturbance.In the proposed methodology the analysis is developed on the basis of the use of two simulation model tools. The First simulation model tool determines the optimal values of variables that the system designer controls, such as the mix of components (Photovoltaics/Wind/Diesel/Battery) that make up the system and the size or quantity of each variable. This model uses the multiyear analysis based on a time-domain simulation run at the energy-flow level with discrete time-steps of 1 h. The Second simulation model tool assumes all the variables and parameters on the grid as constants during the period of the time analyzed. The power flow is analyzed through a programming language command script function and reflects the system response at a specific time with given specific variables and parameters. The final technical proposal and its financial analysis are obtained applying and validating this methodology on a small island, as well as, the selection of the system to be installed for the renewable electricity generation. The electric grid modifications and reinforcements through the years until 2050, according to the grid code and the renewable energy targets settled for the island’s electric power system are included.
机译:本文介绍了一种能源计划,电网评估和经济分析,同时考虑了电力消耗的三种增长情景(低,中,高),以提供混合动力系统(光伏/风/柴油/电池)的能源需求),到2050年在一个小岛上。本研究的主要目的是提出一种方法,以优化和减少电池组的备用时间,该方法包括从所选的混合动力发电系统中提取。此外,它将同时比较四种不同的电池技术,在2050年前可再生能源目标保持在50%不变的情况下,并且电网的连续安全运行不会发生变化。该方法包括网格评估分析,即使在出现干扰的情况下,也可以基于网格代码参数获得可靠,强大和安全的运行响应。在所提出的方法中,分析是在使用两个仿真模型工具的基础上进行的。 First仿真模型工具确定系统设计人员控制的变量的最佳值,例如组成系统的组件(光伏/风/柴油/电池)的混合以及每个变量的大小或数量。该模型使用基于时域仿真的多年分析,该仿真在能量流级别运行,离散时间步长为1 h。第二个仿真模型工具假定在分析期间内网格上的所有变量和参数都是常量。通过编程语言命令脚本功能分析功率流,并利用给定的特定变量和参数反映特定时间的系统响应。通过在一个小岛上应用和验证此方法,以及选择要安装用于可再生能源发电的系统,可获得最终的技术建议及其财务分析。根据电网规范,到2050年为止的几年中,电网都将进行改造和加固,包括为该岛的电力系统设定的可再生能源目标。

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