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Power Quality Improvement Using Multilevel Inverter Based Shunt Active Filter

机译:使用基于多电平逆变器的并联有源滤波器改善电能质量

摘要

Harmonics have become a major issue in the recent times due to the high usage of power electronic equipment. Harmonics lead to many problems such as overheating of equipment, interference with the near, by communication lines, high power loss, low power factor and hence poor usage of equipment. Shunt active filters are used to compensate these harmonics and draw only fundamental component of current from the supply. The shunt active filters be designed using multilevel inverters are more efficient when compared to the classical inverters due to their step voltage waveform. In this work, multilevel inverter based shunt active filters are designed using different controllers such PI and fuzzy logic controllers. There is no requirement of a precise mathematical model when fuzzy logic controllers are used for their design unlike the PI controller. A three level H-bridge was used as the inverter for the filter design. The instantaneous active (iLd), reactive(iLq) components of load current are used to produce the reference compensation currents in this Id-Iq control method. Matlab simulation was used to verify the results.
机译:由于电力电子设备的大量使用,谐波已成为近来的主要问题。谐波导致许多问题,例如设备过热,通信线路对附近设备的干扰,高功率损耗,低功率因数以及设备使用不佳。并联有源滤波器用于补偿这些谐波,并且仅从电源汲取电流的基本成分。与传统逆变器相比,使用多电平逆变器设计的并联有源滤波器由于其阶跃电压波形而效率更高。在这项工作中,使用不同的控制器(例如PI和模糊逻辑控制器)设计了基于多级逆变器的并联有源滤波器。当模糊逻辑控制器用于设计时,与PI控制器不同,不需要精确的数学模型。三电平H桥用作滤波器设计的逆变器。在此Id-Iq控制方法中,负载电流的瞬时有功(iLd),无功(iLq)分量用于产生参考补偿电流。使用Matlab仿真来验证结果。

著录项

  • 作者

    Prafulla Mandava Divya;

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  • 年度 2015
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