Modeling and simulation of a microgrid consisting solar PV & DFIG based wind energy conversion system for St. Martin's island

Abir Muhtadi, A. M. Saleque
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引用次数: 12

Abstract

This paper presents modeling and simulation of an entirely renewable energy based microgrid in MATLAB/Simulink environment for a chosen sample number of population at St. Martin's Island in Bangladesh. The proposed microgrid system consists of Doubly-fed induction generator (DFIG) based wind turbine farm, solar PV array farm and AC loads. The wind turbine farm is interfaced to the microgrid along with PV farm while the PV array is connected via an inverter and a boost converter with a maximum power point tracking system. The microgrid system is tasked with meeting the peak load demand power and primary load demand power for the community, entirely from solar PV and wind farm, whereas in present the region is dependent on diesel generators for fulfilling electricity demand. The overall stability of the microgrid is maintained by employing a small portion of generation mean using redundant diesel generators to meet minimum power requirement of the community for a time being when it's acute and beyond favorable conditions to produce power from renewable energy sources. Finally, simulation study of the microgrid is carried out for various operating conditions and proposed microgrid's feasibility and functionality are observed as tasked earlier.
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圣马丁岛太阳能光伏& DFIG风能转换系统的微电网建模与仿真
本文介绍了一个完全基于可再生能源的微电网在MATLAB/Simulink环境下的建模和仿真,该微电网是在孟加拉国圣马丁岛选定的样本人口数量。所提出的微电网系统由双馈感应发电机(DFIG)风力发电场、太阳能光伏阵列发电场和交流负载组成。风力涡轮机农场与光伏农场一起连接到微电网,而光伏阵列通过逆变器和带有最大功率点跟踪系统的升压转换器连接。微电网系统的任务是满足社区的高峰负荷需求电力和一次负荷需求电力,完全来自太阳能光伏和风力发电场,而目前该地区依赖柴油发电机来满足电力需求。在可再生能源发电条件紧迫且不具备发电条件的情况下,利用冗余的柴油发电机组,在一段时间内满足社区的最低电力需求,从而保持微电网的整体稳定性。最后,对微电网进行了各种运行条件下的仿真研究,并按照前面的任务对所提出的微电网的可行性和功能性进行了观察。
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