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Source current harmonic mitigation of distorted voltage source by using shunt active power filter

机译:使用分流有源电力滤波器源电流谐波扭转电压源

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In this paper, three-phase, four-wire shunt active power filter (SAPF) is utilized to mitigate system harmonics of distorted voltage source for unbalanced and nonlinear loads. Basically, the source voltage should be pure sinusoidal waveform to get a good mitigation of source current harmonics. In this under study system, the source voltage is assumed to be harmonic distortion non-sinusoidal voltage source. The phase locked loop (PLL) control circuit is wielded for extracting the fundamental component of the distorted source voltage to use it as an input signal to the SAPF control. Another input signal to the SAPF is the distorted load current. The SAPF control system uses (p-q) theory to calculate the optimum instantaneous current to be injected by the SAPF to mitigate the source current harmonics even the source voltage is harmonic distorted. MATLAB/SIMULINK software package is utilized to simulate the system under study. The effect of SAPF is tested when it’s used with and without the PLL control circuit. The simulation results show that, the THD of source current when using the PLL control circuit is improved to comply with the harmonic limits given in the IEEE 519-1992 and IEC 61000-4-7 standards.
机译:在本文中,三相,四线分流有源电力滤光器(SAPF)用于减轻扭曲电压源的系统谐波,用于不平衡和非线性负载。基本上,源电压应为纯正弦波,以获得源电流谐波的良好缓解。在该研究系统中,假设源电压为谐波失真非正弦电压源。锁相环(PLL)控制电路芯片用于提取失真源电压的基本组件,以将其用作SAPF控制的输入信号。 SAPF的另一个输入信号是扭曲的负载电流。 SAPF控制系统使用(P-Q)理论来计算由SAPF注入的最佳瞬时电流,以减轻源电流谐波,即使源电压也是谐波扭曲。 MATLAB / SIMULINK软件包用于模拟研究下的系统。当它与PLL控制电路一起使用时,测试SAPF的效果。仿真结果表明,使用PLL控制电路时的源电流的THD得到改善,以符合IEEE 519-1992和IEC 61000-4-7标准中给出的谐波限制。

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