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Co-Active Neuro-Fuzzy Inference System for Governing Control and Excitation Control of Power System Stability

机译:电力系统稳定性控制与励磁控制的联合神经模糊推理系统

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This paper presents the application of extended adaptive neuro-fuzzy inference system (ANFIS) for solving the power system stability problem. The issue of power system stability is becoming more crucial [1]. The excitation and governing control of generator play an important role in improving the dynamic and transient stability of power system. In this paper, the authors present an extended Neuro-fuzzy based method called coactive neuro-fuzzy inference system (CANFIS), for the excitation control and governing control. Among these techniques, generator control is one of the most widely applied in power industry. In this paper a coordination of governing control and excitation control using multiple-output ANFIS with nonlinear fuzzy rules called CANFIS model compensate their control inputs during faults [1]. The proposed CANFIS automatically coordinates the behavior of the two compensations. The observations show its satisfactory behavior for proposed control. A generalized ANFIS which is tuned by a Multilayer Perceptron (MLP) neural network has a modified version of ANFIS and it improves the power system response by fast damping of oscillations of internal angle of generator following different types of faults and different location of transmission line.
机译:本文提出了扩展自适应神经模糊推理系统(ANFIS)在解决电力系统稳定性问题中的应用。电力系统稳定性问题变得越来越关键[1]。发电机的励磁和调节控制对提高电力系统的动态和暂态稳定性起着重要的作用。在本文中,作者提出了一种扩展的基于神经模糊的方法,称为协同神经模糊推理系统(CANFIS),用于励磁控制和控制控制。在这些技术中,发电机控制是电力工业中应用最广泛的技术之一。本文使用多输出ANFIS和称为CANFIS模型的非线性模糊规则协调控制和励磁控制,以补偿故障期间的控制输入[1]。建议的CANFIS自动协调两种补偿的行为。观察结果表明其对拟议控制具有令人满意的性能。由多层感知器(MLP)神经网络调整的广义ANFIS具有ANFIS的改进版本,它可以通过快速衰减发电机内角在不同类型的故障和传输线不同位置后的振荡来改善电力系统的响应。

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