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Five-level (NPC) shunt active power filter performances evaluation using fuzzy control scheme for harmonic currents compensation

机译:使用模糊控制方案对谐波电流补偿的五级(NPC)并联有源电力滤波器性能评估

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This paper present the performances of five-level (NPC) shunt active power filter based on fuzzy control approaches which can mitigate current harmonics generated by nonlinear loads. Five-level inverter is strongly used in the medium and high voltage applications; these advantages are low harmonic distortions, low switching losses, low electromagnetic interference, low voltage stress of power semiconductors and low acoustic noise. On the other hand fuzzy logic has been widely used in various industrial applications. To benefit from these advantages a novel control scheme based on fuzzy logic is proposed. The reference current signals required to compensate harmonic currents use the synchronous current detection method. Proportional integral voltage controller is used to maintain the dc voltage across capacitor constant and reduce inverter losses. The simulation is performed using Matlab-Simulink and SimPowerSystem toolbox. The results obtained under various operating conditions show the effectiveness of the proposed shunt APF system.
机译:本文介绍了基于模糊控制方法的五电平并联有源电力滤波器的性能,该方法可以减轻非线性负载产生的电流谐波。五电平逆变器广泛用于中高压应用;这些优点包括低谐波失真,低开关损耗,低电磁干扰,功率半导体的低电压应力和低噪声。另一方面,模糊逻辑已广泛用于各种工业应用中。为了从这些优点中受益,提出了一种基于模糊逻辑的新型控制方案。补偿谐波电流所需的参考电流信号使用同步电流检测方法。比例积分电压控制器用于保持电容器两端的直流电压恒定并减少逆变器损耗。使用Matlab-Simulink和SimPowerSystem工具箱进行仿真。在各种运行条件下获得的结果表明了所提出的并联APF系统的有效性。

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