基于超导磁储能的微电网系统仿真

Yang Xie, Meng Song, Jing Shi, Guozhong Jiang, P. Geng, Ming Zhang
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引用次数: 7

摘要

可再生能源发电被广泛用于解决能源短缺和环境问题。由于太阳能电池和风力发电机组的输出功率会随着阳光照射和风向的变化而变化,太阳能电池和风力发电机组的功率不稳定,因此需要一个接入微网系统的存储设备。超导磁能储能(SMES)具有高效储能和快速响应电力交换的特点,可以满足微电网的平衡。本文提出了一种结合中小企业和微电网的改进控制策略。中小企业和微电网系统通过交流母线连接在一起。利用MATLAB/SIMULINK建立了系统的详细模型。给出了中小企业与光伏并网系统并网前后的仿真结果,并进行了比较和分析。仿真结果表明,微电网侧功率可以保持恒定值,有利于微电网系统的稳定性和可靠性。
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Simulation on a micro-grid system based on superconducting magnetic energy storage
Renewable energy generation is widely used to solve energy shortage and environment problem. Since the output power of the solar cell and the wind turbine will change with the sunlight irradiation and the wind flow, the power of the solar cell and the wind turbine are not stable, so there is a need of a storage equipment connected to the micro-grid system. With the characteristics of high efficient energy storage and quick response to the power exchange, the superconducting magnetic energy storage (SMES) can be used to meet the balance of the micro-grid. This paper proposes an improved control strategy combing SMES and micro-grid. A SMES and micro-grid system are connected together with the AC bus. A detailed model of the hybrid system is built with MATLAB/SIMULINK. Simulation results with and without SMES connected to the grid-connected photovoltaic system are presented, compared, and analyzed. The results of simulation demonstrate that the SMES system can maintain the grid side power as a constant value which can contribute to the stability and reliability of the micro-grid system.
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