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Improvement in Two Adjacent Microgrids Frequency Using the AC-to-AC Converter Based on Sugeno Fuzzy Control Scheme

机译:基于Sugeno模糊控制方案的AC-TA-AC转换器改进了两个相邻的微电网频率

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摘要

Microgrid and multi-microgrid are solution for integrating DGs into a system and are components of future power systems. Exploitation and frequency control in islanding mode is of special importance due to the lack of sufficient spinning reserve. Almost, DGs are connected to the microgrid through inverters and frequency deviation from an allowed threshold makes their removal from the main grid which is not acceptable for consumers and producers of the electrical power. One way for frequency control and optimized exploitation of the entire system is to connect the adjacent microgrids. Indeed, the microgrids cooperate together through exchanging their power surplus and power shortage. In this paper, a new hybrid control method based on Sugeno- and Mamdani-type fuzzy inference system to control an AC-to-AC converter connector of two adjacent microgrids has been proposed. An analytical method for controlling the converter was developed using the Sugeno. The proposed method is simple and practical and can be easily implemented. Moreover, to eliminate the steady-state error and to modify the performance of the control system, it is proposed to use a PI fuzzy controller in its outer loop. Simulation results show that the AC-to-AC converter with the proposed controlling strategy has prevented the intensive frequency deviations and has improved the frequency control in both microgrids.
机译:微电网和多微电网是将DGS集成到系统中的解决方案,并且是未来电力系统的组件。由于缺乏足够的纺纱储备,岛屿模式中的开发和频率控制具有特殊重要性。几乎,DGS通过逆变器连接到微电网,并且允许阈值的频率偏差使得它们从主电网移除,这对电力的消费者和生产者来说是不可接受的。频率控制和整个系统的优化开发的一种方法是连接相邻的微电网。实际上,微电网通过交换电力盈余和电力短缺来合作。本文提出了一种基于Sugeno-and Mamdani型模糊推理系统的新的混合控制方法,用于控制两个相邻微电网的AC-TA-AC转换器连接器。使用Sugeno开发了一种控制转换器的分析方法。该方法简单实用,可以轻松实现。此外,为了消除稳态误差并修改控制系统的性能,建议在其外循环中使用PI模糊控制器。仿真结果表明,具有所提出的控制策略的AC到AC转换器防止了强化频率偏差,并改善了两种微电网中的频率控制。

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