基于瞬时功率理论的级联多电平逆变器单相并联有源滤波器谐波抑制

Musa Yusup Lada, S. Mohamad, Johar Akbar Mohamat Gani, M. Nawawi, Gan Chin Kim
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引用次数: 14

摘要

由于电力需求的增加,可再生能源如太阳能的使用如今在电力系统中得到了特别的应用。因此,电力电子变换器被广泛用于执行所需的能量转换。然而,像多电平逆变器(MLI)这样的器件却没有进行无谐波设计。这种现象将造成电能质量问题,如总谐波失真(THD)的增加。此外,非线性负荷使用的增加也导致了谐波问题。提出了一种基于瞬时功率理论的单相并联有源功率滤波器。有源滤波器的性能取决于瞬时功率理论控制策略,该策略结合级联MLI来降低负载电流中的THD。它能够在良好的性能下提供谐波和无功补偿。三相有源滤波器一般采用瞬时功率理论。但是,它可以在单相中使用,假设电压和电流相等,另外两个电压和电流以120°的角度移位重复,将用于瞬时功率理论的输入。借助MATLAB/SIMULINK工具箱对系统进行了大量仿真验证,分析了输出波形和电流、电压的THD值。采用并联APF到MLI,电流的THD可降低70% ~ 84%左右。
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Reduction of harmonic using single phase shunt active power filter based on instantaneous power theory for cascaded multilevel inverter
The use of renewable energy such as solar is nowadays exceptionally used in electrical systems due to increasing on power demand. Thus, power electronic converters are widely used to perform the required energy conversion. However, the device such as multilevel inverter (MLI) is designed without harmonic-less. This phenomenon will create power quality problem such as increases in total harmonic distortion (THD). Moreover, increasing of the nonlinear loads usage also contributed in harmonic problem. This paper presents the single phase shunt active power filter (APF) based on instantaneous power theory. The performance of APF depends on instantaneous power theory control strategies which combined with the cascaded MLI to reduce the THD in load current. It enables to provide compensation of harmonic and reactive power in good performance. Generally, the instantaneous power theory is implemented in three phase APF. However, it can be used in single phase by assuming equal voltage and current and the other two voltages and currents are duplicated with 120° angle shifting that will be used for input of instantaneous power theory. The system is validated through extensive simulation with the aid of MATLAB/SIMULINK Toolbox to analyze the output waveform and THD values of current and voltage. The implementation of shunt APF to MLI, the THD of current can be reduced around 70% to 84%.
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