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Operation of One-Cycle Controlled Three-Phase Active Power Filter With Unbalanced Source and Load

机译:源和负载不平衡的单周期控制三相有源电力滤波器的运行

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The power quality of the ac electric system has become a great concern due to the rapidly increasing numbers of electronic equipment being connected to the grid. In order to reduce harmonic contamination in power lines and to improve its transmission efficiency, the research on active power filters (APF) has become a hot topic. Many control methods for APF were proposed in recent years. Among them, one-cycle control (OCC) has shown great promise featuring excellent harmonic suppression, simple circuitry, robust performance, and low cost for the control of three-phase APFs. Theory and experiments in previous papers have demonstrated the validity of OCC-controlled APFs working with balanced line voltages and balanced nonlinear loads. However, in reality, neither three-phase grid voltages nor three-phase nonlinear loads are balanced at all times; therefore, it is vital for an APF to be able to handle unbalanced sources and/or loads. In this paper, the OCC-controlled three-phase APF working with unbalanced three-phase line voltages and unbalanced loads are studied, respectively. Theoretical analyses and experimental results indicate that with OCC control, sinusoidal input currents can be realized, whether the input voltages and/or the nonlinear loads are balanced or unbalanced
机译:由于连接到电网的电子设备数量迅速增加,因此,交流电气系统的电能质量已成为人们关注的焦点。为了减少电力线中的谐波污染并提高其传输效率,有源电力滤波器(APF)的研究已成为一个热门话题。近年来,提出了许多APF的控制方法。其中,单周期控制(OCC)具有出色的前景,它具有出色的谐波抑制能力,简单的电路,强大的性能以及低成本的三相APF控制。先前论文中的理论和实验已经证明了在平衡线电压和平衡非线性负载下,OCC控制的APF的有效性。但是,实际上,三相电网电压和三相非线性负载均不能始终保持平衡。因此,APF必须能够处理不平衡的电源和/或负载,这一点至关重要。本文分别研究了OCC控制的三相APF,该三相APF在三相线电压不平衡和负载不平衡的情况下工作。理论分析和实验结果表明,通过OCC控制,无论输入电压和/或非线性负载是平衡还是不平衡,都可以实现正弦输入电流

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