基于anfiss的智能PI控制器在微电网二次频率和电压控制中的应用

Alireza Esmaeili Karkevandi, Matin Jamaliyan Daryani, Ö. Usta
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引用次数: 9

摘要

具有不同能源的智能微电网被认为是下一代电网。为了使该系统可靠有效地运行,需要先进的通信技术和智能信息处理技术。在这种系统中,使用了几个具有局部和全局控制回路的电子接口分布式代(dg)。在DGs控制系统中,初级控制级别负责电压和频率调节并保持微电网的稳定性。但是,一次控制可能造成电压和频率偏差,不能保证零电压或零频率调节误差。为了补偿这些偏差,提高精度和全局可控性,同时保证微电网无功共享,本文提出了一种基于PI控制器的智能分布式二次控制方案。采用自适应神经模糊接口系统(ANFIS)技术,根据微网运行情况调整PI控制器系数,实现PI控制器参数的自适应最优调整。所提出的ANFIS控制器在不同的研究案例中表现出良好的性能和可接受的响应。
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ANFIS-Based Intelligent PI Controller for Secondary Frequency and Voltage Control of Microgrid
Intelligent microgrid with different energy sources is considered as the next generation of power grid. For reliable and effective operation of this system, advanced communication and intelligent information processing techniques are required. In such a system, several electronic interfaced Distributed Generations (DGs) with local and global control loops are utilized. At DGs control systems, the primary control level is responsible for voltage and frequency regulation and maintaining microgrid stability. However, primary control may cause voltage and frequency deviation and it cannot guarantee zero voltage or frequency regulation errors. In this paper, to compensate these deviations, improve accuracy, global controllability and also to ensure reactive power sharing in the microgrid, a novel intelligent and distributed secondary control scheme is proposed, which is based on PI controller. To adaptively and optimally adjust PI controller parameters the Adaptive Neuro-Fuzzy Interface System (ANFIS) technique is used, which adjust PI controller coefficients according to microgrid operation conditions. The proposed ANFIS controller shows proper performance and acceptable response to different study cases.
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