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The benefit of harmonics current using a new topology of hybrid active power filter

机译:使用混合有源电力滤波器的新拓扑的谐波电流的好处

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This paper presents a new idea to benefit of eliminated harmonics current by using a new topology of hybrid active power filter (HAPF) to compensate harmonics current to be sinusoidal in order to feed some loads. The design and simulation of a new three phase HAPF circuit using a shunt active power filter (APF) connected in parallel with a capacitor (C) line of a (LC) low pass filter (LPF) has been submitted. The first aim of the new circuit is to use the LPF as a path to pass the fundamental frequency (50 Hz) current and eliminate other high order frequencies, while APF compensates high order frequencies and compensate reactive power of the circuit. The second aim is to benefit from the modified wave in the high frequency branch of LPF to use it as a useful power in order to feed different loads. In addition, With this topology, the resonance problem (which usually happens between LPF and the system) will disappear because of using of APF in the high frequency branch. The control circuit has been designed based on the instantaneous reactive power theory. A Clarke transformation equations and hysteresis current controller have been used in the HAPF's design. The proposed circuit has provided a good harmonic elimination, total harmonic distortion (THD) reduced, reactive power compensation and a reasonable sinusoidal waveform.
机译:本文提出了一种新的想法,它通过使用混合有源电力滤波器(HAPF)的新拓扑来补偿谐波电流为正弦波,从而消除一些谐波电流,从而为某些负载供电。提出了一种新的三相HAPF电路的设计和仿真,该电路使用并联有源电力滤波器(APF)与(LC)低通滤波器(LPF)的电容器(C)线并联连接。新电路的第一个目标是使用LPF作为通过基频(50 Hz)电流并消除其他高阶频率的路径,而APF补偿高阶频率并补偿电路的无功功率。第二个目的是从LPF高频分支中的修改波中受益,将其用作有用功率,以馈入不同的负载。此外,使用这种拓扑,由于在高频分支中使用了APF,谐振问题(通常在LPF和系统之间发生)将消失。控制电路是根据瞬时无功功率理论设计的。 HAPF的设计中使用了Clarke转换方程式和磁滞电流控制器。所提出的电路具有良好的谐波消除能力,总谐波失真(THD)降低,无功功率补偿和合理的正弦波形。

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