基于混合模糊比例积分和迟滞控制器的有源电力滤波控制缓解电动汽车产生的谐波

F. R. Puthiyottil, H. Shareef, K. Kiranmai
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引用次数: 2

摘要

本文提出了一种利用并联有源电力滤波器(APF)最小化电动汽车充电器在共耦合点注入的谐波的方法。所提出的有源滤波器采用双向电压源逆变器(VSI)。本文采用了两种不同的控制技术来增强系统的鲁棒性和有效性。首先,开发了一种有效的迟滞控制器,为驱动VSI提供必要的开关脉冲。然后,设计了一个混合模糊比例积分(PI)控制器来调节VSI的直流链路电压。此外,采用正序同步参考帧控制器和低通滤波器估计和提取电动汽车充电器在共耦合点注入的谐波含量。随后,进行了各种案例研究,以评估所提出的谐波缓解技术的性能。仿真结果表明,与传统PI控制器相比,基于模糊PI的直流链路调节方法在各种工况下对直流链路电容电压的动态控制能力增强。此外,在各种工作条件下,源端的总谐波失真(电流)可以被限制在远低于IEEE 5191992谐波标准的水平。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Active Power Filter Control Using Hybrid Fuzzy Proportional-Integral and Hysteresis Controllers for Mitigating the Harmonics Generated by Electric Vehicles
In this study, a method is proposed to minimize the harmonics injected by the electric vehicle (EV) chargers at the point of common coupling using a shunt active power filter (APF). The proposed APF utilizes a bidirectional voltage source inverter (VSI). Herein, two different control techniques are implemented to enhance the robustness and effectiveness of the system. First, an effective hysteresis controller is developed to provide the necessary switching pulses for driving the VSI. Then, a hybrid fuzzy proportional-integral (PI) controller is designed to regulate the DC link voltage of the VSI. Furthermore, a positive-sequence synchronous reference frame controller and a low-pass filter are used to estimate and extract the harmonics content injected by the EV chargers at the point of common coupling. Subsequently, various case studies are conducted to evaluate the performance of the proposed harmonics mitigation technique. The simulation results show that the fuzzy PI-based DC link regulation method provides enhanced dynamic control of the DC link capacitor voltage under various operating conditions when compared with those provided by a conventional PI controller. Furthermore, the total harmonic distortion (current) at the source side under various operating conditions can be limited well below the IEEE 5191992 harmonic standard.
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