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Event-based internal model control approach for frequency deviation control in islanded micro grid

机译:基于事件的内部模型控制方法在孤岛微电网中的频率偏差控制

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This work faces the problem of frequency deviation in microgrid systems. The considered microgrid includes renewable energy sources such as wind and solar photovoltaic. As long as these sources provide an irregular power supply or there is a sudden change in the system load, the power system frequency deviates. In order to compensate such deviations, alternative, conventional energy sources should be commanded in order to provide the corresponding power deficit. In this paper a very simple and of common industrial practice control approach such as the Internal Model Control based on first order plus time delay models is proposed within an event-based framework. As the commanded energy sources are based on fuel consumption, the control usage has to be maintained at low levels. It is shown that the event-based approach is able to provide accurate frequency deviation control with very low movements for the control signal. Time domain simulations show the effectiveness of the approach as compared with other more sophisticated controllers already proposed in the literature.
机译:这项工作面临着微电网系统中频率偏差的问题。所考虑的微电网包括可再生能源,例如风能和太阳能光伏发电。只要这些电源提供不规则的电源或系统负载突然变化,电源系统的频率就会发生偏差。为了补偿这种偏差,应当命令替代的常规能源,以便提供相应的功率不足。在本文中,在基于事件的框架内,提出了一种非常简单且通用的工业实践控制方法,例如基于一阶加时滞模型的内部模型控制。由于命令的能源基于燃料消耗,因此控制使用量必须保持在较低水平。结果表明,基于事件的方法能够以很小的控制信号运动提供精确的频率偏差控制。与文献中已经提出的其他更复杂的控制器相比,时域仿真显示了该方法的有效性。

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