孤立微电网系统的控制与动态分析:一个案例研究

R. Ahshan, N. Nasiri, A. Al-Badi, N. Hosseinzadeh
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引用次数: 0

摘要

包含风力发电、光伏发电、柴油发电等微发电机组的微电网,其运行一直是微电网建设面临的挑战。这些挑战是由于风能和太阳能等主要能源的间歇性行为而产生的。最大的岛屿,阿曼苏丹国的马西拉岛,具有利用当地可再生能源建立微电网的巨大潜力。本文介绍了一个微电网系统的运行和控制动力学,该系统具有在马西拉岛实施的巨大潜力。利用MATLAB/SIMULINK建立了微电网系统模型。分析了微电网在有和没有微电网控制器的情况下的运行行为。本文还介绍了一种能够在微电网中保持有功功率平衡的高效微电网控制器的设计和分析。所提出的微电网控制器结合了功率吸收电路和工频下垂特性。结果表明,所设计的控制器能够将微电网的频率保持在电网标准范围内,这表明了微电网在隔离模式下运行的能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Control and Dynamic Analysis of an Isolated Microgrid System: A Case Study
The operation of microgrids that contain microgeneration units such as wind, photovoltaic, and diesel power generations is always challenging towards the establishment of such microgrids. Such challenges arise due to the intermittent behavior of primary energy sources such as wind and solar. The largest island, Masirah, in the Sultanate of Oman, has significant potential of establishing microgrid using locally available sources of renewable energy. This paper presents the operation and control dynamics of a microgrid system that has significant potential to implement for Masirah Island. The case study microgrid system model has constructed using MATLAB/SIMULINK. The operational behavior of the case study microgrid is analyzed with and without a microgrid controller. It also presents the design and analysis of an efficient microgrid controller that is capable of maintaining an active power balance in the microgrid. The combination of a power absorber circuit and a power-frequency droop characteristic are incorporated in the proposed microgrid controller. The outcomes show that the designed controller is capable of maintaining microgrid frequency within the grid standard, which indicates the capability of operating such microgrid in isolated modes.
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