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Optimal energy management system using biogeography based optimization for grid-connected MVDC microgrid with photovoltaic, hydrogen system, electric vehicles and Z-source converters

机译:基于生物地理的基于网格连接的MVDC微电网的最优能量管理系统,具有光伏,氢气系统,电动车和Z源转换器

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摘要

Currently, the technology associated with charging stations for electric vehicles (EV) needs to be studied and improved to further encourage its implementation. This paper presents a new energy management system (EMS) based on a Biogeography-Based Optimization (BBO) algorithm for a hybrid EV charging station with a configuration that integrates Z-source converters (ZSC) into medium voltage direct current (MVDC) grids. The EMS uses the evolutionary BBO algorithm to optimize a fitness function defining the equivalent hydrogen consumption/generation. The charging station consists of a photovoltaic (PV) system, a local grid connection, two fast charging units and two energy storage systems (ESS), a battery energy storage (BES) and a complete hydrogen system with fuel cell (FC), electrolyzer (LZ) and hydrogen tank. Through the use of the BBO algorithm, the EMS manages the energy flow among the components to keep the power balance in the system, reducing the equivalent hydrogen consumption and optimizing the equivalent hydrogen generation. The EMS and the configuration of the charging station based on ZSCs are the main contributions of the paper. The behaviour of the EMS is demonstrated with three EV connected to the charging station under different conditions of sun irradiance. In addition, the proposed EMS is compared with a simpler EMS for the optimal management of ESS in hybrid configurations. The simulation results show that the proposed EMS achieves a notable improvement in the equivalent hydrogen consumption/generation with respect to the simpler EMS. Thanks to the proposed configuration, the output voltage of the components can be upgraded to MVDC, while reducing the number of power converters compared with other configurations without ZSC.
机译:目前,需要研究和改进与电动车辆充电站(EV)相关的技术,以进一步鼓励其实现。本文介绍了一种新的能源管理系统(EMS),基于基于生物地理的优化(BBO)算法,用于混合EV充电站,该配置将Z源转换器(ZSC)集成到中压直流(MVDC)网格中。 EMS使用进化BBO算法优化定义等效氢消耗/代的适应性函数。充电站包括光伏(PV)系统,本地网格连接,两个快速充电单元和两个能量存储系统(ESS),电池储能(BES)和具有燃料电池(FC)的完整氢系统,电解箱(LZ)和氢气罐。通过使用BBO算法,EMS管理部件之间的能量流动,以保持系统中的功率平衡,降低等效的氢消耗并优化等效的氢气产生。基于ZSCS的充电站EMS和配置是纸张的主要贡献。在不同条件的太阳辐照度下,SPS的行为与三个EV连接到充电站。此外,将所提出的EMS与简单的EMS进行比较,用于混合配置的ESS的最佳管理。仿真结果表明,所提出的EMS在相对于更简单的EMS上实现了相同的氢消耗/产生的显着改善。由于所提出的配置,可以将组件的输出电压升级到MVDC,同时减少了与没有ZSC的其他配置相比的电源转换器的数量。

著录项

  • 来源
    《Energy Conversion & Management》 |2021年第11期|114808.1-114808.14|共14页
  • 作者单位

    Univ Cadiz Dept Elect Engn Higher Tech Sch Engn Algeciras ETSIA Res Grp Sustainable & Renewable Elect Technol PAI Avda Ramon S-N Cadiz 11202 Spain;

    Univ Cadiz Dept Elect Engn Higher Tech Sch Engn Algeciras ETSIA Res Grp Sustainable & Renewable Elect Technol PAI Avda Ramon S-N Cadiz 11202 Spain;

    Univ Cadiz Dept Elect Engn Higher Tech Sch Engn Algeciras ETSIA Res Grp Sustainable & Renewable Elect Technol PAI Avda Ramon S-N Cadiz 11202 Spain|Fed Ctr Technol Educ Minas Gerais Dept Electroelect R Raymundo Matoso 900 BR-35790000 Curvelo MG Brazil;

    Univ Cadiz Res Grp Sustainable & Renewable Elect Technol PAI Dept Engn Automat Elect & Comp Architecture & Net Higher Tech Sch Engn Algeciras ETSIA Avda Ramon Puyol S-N Cadiz 11202 Spain;

    Univ Cadiz Dept Elect Engn Higher Tech Sch Engn Algeciras ETSIA Res Grp Sustainable & Renewable Elect Technol PAI Avda Ramon S-N Cadiz 11202 Spain;

    Cardiff Univ Sch Engn Cardiff CF24 3AA Wales;

    Univ Cadiz Dept Elect Engn Higher Tech Sch Engn Algeciras ETSIA Res Grp Sustainable & Renewable Elect Technol PAI Avda Ramon S-N Cadiz 11202 Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Microgrid; Hydrogen system; Electric vehicles; Power converters; Energy management system;

    机译:微电网;氢气系统;电动车;电源转换器;能源管理系统;

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