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Novel optimization technique of isolated microgrid with hydrogen energy storage

机译:储氢隔离微电网的优化新技术

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摘要

This paper presents a novel optimization technique for energy management studies of an isolated microgrid. The system is supplied by various Distributed Energy Resources (DERs), Diesel Generator (DG), a Wind Turbine Generator (WTG), Photovoltaic (PV) arrays and supported by fuel cell/electrolyzer Hydrogen storage system for short term storage. Multi-objective optimization is used through non-dominated sorting genetic algorithm to suit the load requirements under the given constraints. A novel multi-objective flower pollination algorithm is utilized to check the results. The Pros and cons of the two optimization techniques are compared and evaluated. An isolated microgrid is modelled using MATLAB software package, dispatch of active/reactive power, optimal load flow analysis with slack bus selection are carried out to be able to minimize fuel cost and line losses under realistic constraints. The performance of the system is studied and analyzed during both summer and winter conditions and three case studies are presented for each condition. The modified IEEE 15 bus system is used to validate the proposed algorithm.
机译:本文提出了一种新的优化技术,用于隔离微电网的能源管理研究。该系统由各种分布式能源(DER),柴油发电机(DG),风力涡轮发电机(WTG),光伏(PV)阵列提供,并由燃料电池/电解氢存储系统支持以进行短期存储。通过非支配排序遗传算法进行多目标优化,以适应给定约束条件下的负荷需求。一种新颖的多目标花授粉算法被用来检查结果。比较和评估了两种优化技术的优缺点。使用MATLAB软件包对隔离的微电网进行建模,进行有功/无功功率分配,通过选择松弛的总线进行最优潮流分析,从而能够在实际约束下将燃料成本和线路损失降至最低。在夏季和冬季条件下都对系统的性能进行了研究和分析,并针对每种条件提出了三个案例研究。修改后的IEEE 15总线系统用于验证所提出的算法。

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