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Five-level diode-clamped active power filter using voltage space vector-based indirect current and predictive harmonic control

机译:基于电压空间矢量的间接电流和预测谐波控制的五级二极管钳位有源功率滤波器

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摘要

This study presents an active power filter (APF) based on diode-clamped multilevel circuits with auxiliary dc-link voltage balancing circuits and harmonic compensation control. The control algorithm is composed of indirect current loop for active and reactive power control, predictive current loop for harmonic filtering control and independent control for auxiliary balancing circuits. Among these modules, the indirect current along with the predictive current control will generate a combined voltage reference to the module of space vector pulse-width modulation, which could output optimal modulation signals to the voltage control of a diode-clamped multilevel converter. Comparing with traditional dc control for two-level APF, this system takes advantages of indirect current control and multilevel circuits, including improvement in waveform quality, increase in system power rate and reduction in voltage stress and switching frequency on power semiconductors. Simulation and experimental results validate the effective control of the presented system.
机译:这项研究提出了一种基于二极管钳位的多级电路的有源功率滤波器(APF),该电路具有辅助直流母线电压平衡电路和谐波补偿控制。该控制算法由用于有功和无功功率控制的间接电流环路,用于谐波滤波控制的预测电流环路以及用于辅助平衡电路的独立控制组成。在这些模块中,间接电流与预测电流控制一起将为空间矢量脉宽调制模块生成一个组合电压参考,该模块可以将最佳调制信号输出到二极管钳位多电平转换器的电压控制。与传统的两级APF直流控制相比,该系统具有间接电流控制和多级电路的优势,包括改善波形质量,提高系统功率速率以及降低功率半导体上的电压应力和开关频率。仿真和实验结果验证了所提出系统的有效控制。

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    《Power Electronics, IET》 |2014年第3期|713-723|共11页
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