基于模糊和LS-PWM控制的七电平NPC逆变器并联有源滤波性能研究

Salim Chennai
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引用次数: 3

摘要

提出了一种基于LS-PWM和模糊控制的新型七电平中性点箝位并联有源电力滤波系统,该系统可以消除非线性负载产生的电流谐波。今天,多电平逆变器在中高压应用中得到了广泛应用;其优点是低谐波畸变、低开关损耗、低电磁干扰和低噪声。其次,模糊逻辑技术已经成功地应用于一些电力电子应用中。模糊控制器不需要精确的数学模型,可以处理不精确的输入,可以处理非线性,并且比传统控制器更具鲁棒性。为了利用这些优点,提出了一种基于模糊和LS-PWM技术的七电平逆变器控制方案。补偿谐波电流所需的参考电流信号采用同步电流检测方法,该方法实现简单,谐波补偿效果好。采用Matlab-Simulink软件和SimPowerSystem工具箱对并联有源滤波器进行了稳态和暂态评估。仿真结果表明,基于七电平(NPC)逆变器的并联有源滤波器在改善电能质量方面的有效性,以及模糊与LS-PWM相结合的控制方案在谐波补偿和动态性能方面优于传统控制器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Shunt Active Power Filter Performances based on Seven-level NPC Inverter using Fuzzy and LS-PWM Control Scheme
This paper presents novel seven-level neutral point clamped (npc) shunt active power filter system based on LS-PWM and fuzzy control approaches which can eliminate current harmonics generated by nonlinear loads. Today, multi-level inverters are strongly used in the medium and high voltage applications; their advantages are low harmonic distortions, low switching losses, low electromagnetic interference, and low acoustic noise. Second, fuzzy logic techniques have been successfully employed in several power electronic applications. Fuzzy controller does not need an accurate mathematical model, can work with imprecise inputs, can handle non-linearity, and are more robust than conventional controllers. To benefit from these advantages a novel control scheme for seven-level (npc) inverter based on Fuzzy and LS-PWM technique is proposed. The reference current signals required to compensate harmonic currents use the synchronous current detection method, this technique is easy to implement and achieves good performances for harmonic compensation. The proposed shunt APF is evaluated using Matlab-Simulink software and SimPowerSystem Toolbox under transient and steady state for various operation conditions. The simulation results show the effectiveness of the proposed shunt active filter based on seven-level (NPC) inverter for improving the power quality and the superiority of combined fuzzy and LS-PWM control scheme to conventional controller in term of harmonics compensation and dynamic performances.
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来源期刊
EEA - Electrotehnica, Electronica, Automatica
EEA - Electrotehnica, Electronica, Automatica Engineering-Electrical and Electronic Engineering
CiteScore
0.90
自引率
0.00%
发文量
26
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