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A novel adaptive HBCC technique for three-phase shunt APF

机译:三相并联APF的新型自适应HBCC技术

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摘要

This paper proposes an important improvement of the hysteresis band current control (HBCC) technique for three-phase shunt active power filter (APF) to eliminate harmonics and to compensate the reactive power generated by three-phase rectifier. In this technique, a simple and quick prediction of the hysteresis band is added to a phase-locked-loop (PLL) control to ensure constant switching frequency and synchronization of modulation pulses independently on system parameters. This allows the advantages of quick response, good current tracking accuracy and minimal ripple in three-phase systems. This technique is robust and it is characterized by the simplicity, this aspect is very significant for a practice realization because it constitutes the factors which determine the cost and the reliability of industrial assembly. The proposed technique determines the switching signals of the three-phase shunt APF and the algorithm which is based on the dc bus capacitors voltage regulation using proportional-integral (PI) controller is used to determine the suitable current reference signals. The behavior of the proposed technique has been fully verified by digital simulation, where the obtained results show that the proposed technique can improve shunt APF performances noticeably.
机译:本文提出了对三相并联有源电力滤波器(APF)的迟滞带电流控制(HBCC)技术的重要改进,以消除谐波并补偿三相整流器产生的无功功率。在该技术中,将滞后带的简单快速预测添加到锁相环(PLL)控制中,以确保恒定的开关频率和独立于系统参数的调制脉冲同步。这在三相系统中具有快速响应,良好的电流跟踪精度和最小纹波的优点。该技术是鲁棒的,并且其特征在于简单性,这对于实践实现是非常重要的,因为它构成了决定工业装配的成本和可靠性的因素。所提出的技术确定了三相并联APF的开关信号,并使用基于比例积分(PI)控制器的直流总线电容器电压调节算法来确定合适的电流参考信号。数字仿真已经充分验证了所提出技术的性能,所得结果表明所提出的技术可以显着改善并联APF性能。

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