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An integrated approach to design site specific distributed electrical hubs combining optimization, multi-criterion assessment and decision making

机译:集成方法设计特定于站点的分布式电气集线器,结合优化,多标准评估和决策制定

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摘要

An integrated approach is presented in this study to design electrical hubs combining optimization, multi-criterion assessment and decision making. Levelized Energy Cost (LEC), Initial Capital Cost (ICC), Grid Integration Level (GI), Levelized CO2 emission (LCO2), utilization of renewable energy, flexibility of the system, loss of load probability (LOLP) are considered as criteria used to assess the design. The novel approach consists of several steps. Pareto analysis is conducted initially using 2D Pareto fronts to reduce the dimensions of the optimization problem. Subsequently, Pareto multi objective optimization is conducted considering LEC, GI and ICC which were identified as the best set of objective functions to represent the design requirements. Next, fuzzy TOPSIS and level diagrams are used for multi-criterion decision making (MCDM) considering the set of criteria and the boundary matrix that represents the design requirements of the application. Pareto analysis shows that 5D optimization problem can be reduced to a 3D optimization problem when considering LEC, ICC and GI as the objective functions. Finally, results obtained from the case study shows that the novel method can be used design distributed energy systems considering a set of criteria which is beyond the reach of Pareto optimization with different priority levels.
机译:在这项研究中提出了一种综合方法来设计结合了优化,多准则评估和决策的电气集线器。均等能源成本(LEC),初始资本成本(ICC),电网集成水平(GI),二氧化碳排放水平(LCO2),可再生能源利用,系统灵活性,负载概率损失(LOLP)被视为使用标准评估设计。新颖的方法包括几个步骤。最初使用2D Pareto前沿进行Pareto分析,以减小优化问题的范围。随后,考虑到LEC,GI和ICC被认为是代表设计要求的最佳目标函数集,从而进行了帕累托多目标优化。接下来,考虑到一组标准和代表应用程序设计要求的边界矩阵,将模糊TOPSIS和水平图用于多标准决策(MCDM)。帕累托分析表明,将LEC,ICC和GI作为目标函数时,可以将5D优化问题简化为3D优化问题。最后,从案例研究中获得的结果表明,该新方法可用于设计分布式能源系统,其中考虑了一组具有不同优先级的帕累托优化方法无法达到的标准。

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