首页> 外文期刊>Journal of intelligent & fuzzy systems: Applications in Engineering and Technology >Three-phase amplitude adaptive notch filter control design of DSTATCOM under unbalanced/distorted utility voltage conditions
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Three-phase amplitude adaptive notch filter control design of DSTATCOM under unbalanced/distorted utility voltage conditions

机译:不平衡/扭曲公用电压条件下DSTATCOM的三相幅度自适应缺口滤波器控制设计

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摘要

This paper deals with a control design based on amplitude adaptive notch filter (AANF) for a four-leg distributed static compensator (DSTATCOM) in a three-phase four-wire distribution grid to overcome current-related problems of power quality. Extracted reference currents of DSTATCOM are obtained using AANF because of its simple structure, exact measuring of frequency and amplitude, suitable estimation of the desired signal, and capability of tracking the changes of the input signal amplitude. To improve the dynamic performance of DSTATCOM, two fuzzy logic controllers are utilized to regulate DC link voltage and the voltage of point of common coupling (PCC). Furthermore, an adaptive hysteresis band current controller is applied for generating the gate pulses of IGBT switches. The proposed control scheme is robust to power system oscillations, especially when the main voltage suffers from disturbances and unbalancing. Different surveys are performed to study the efficacy of the proposed method, and results are verified through the simulation results in MATLAB/Simulink environment.
机译:本文涉及基于幅度自适应陷波滤波器(AANF)的控制设计,用于三相四腿分布式静态补偿器(DSTATCOM),以克服电力质量的电流相关问题。利用AANF获得DSTATCOM的提取的参考电流,因为其结构简单,频率和幅度的精确测量,所需信号的适当估计,以及跟踪输入信号幅度的变化的能力。为了提高DSTATCOM的动态性能,使用两个模糊逻辑控制器来调节DC链路电压和公共耦合点的电压(PCC)。此外,应用自适应滞后带电流控制器以产生IGBT开关的栅极脉冲。所提出的控制方案对电力系统振荡具有鲁棒,特别是当主电压遭受干扰和不平衡时。执行不同的调查以研究所提出的方法的功效,并且通过MATLAB / Simulink环境的模拟结果验证了结果。

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