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Shunt Active Power Filter Based on Cascaded Transformers Coupled With Three-Phase Bridge Converters

机译:基于级联变压器和三相桥式转换器的并联有源电力滤波器

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This paper proposes a multilevel shunt active power filter (SAPF) to deal with either harmonic current compensation or reactive power compensation. Such a device can reduce the harmonic distortion at the grid currents provided by nonlinear loads located in stiff systems. The proposed SAPF is based on three-phase bridge converters connected to cascaded single-phase transformers. The transformer arrangement permits the compensator to use a single dc-link unit, which simplifies the control strategy and the number of sensors. The multilevel waveforms are generated by using a suitable pulse-width modulation (PWM) strategy associated with the transformer turns ratio. Modularity and simple maintenance make the proposed SAPF an attractive solution compared with some conventional configurations. The model, the PWM technique, and the control strategy are presented, as well as studies considering harmonic distortion and semiconductor losses estimation. Simulation and experimental results are presented in order to validate theoretical approaches.
机译:本文提出了一种多级并联有功功率滤波器(SAPF)来处理谐波电流补偿或无功功率补偿。这样的设备可以减小由位于刚性系统中的非线性负载提供的电网电流下的谐波失真。提出的SAPF基于连接到级联单相变压器的三相桥式转换器。变压器装置允许补偿器使用单个直流链路单元,从而简化了控制策略和传感器的数量。通过使用与变压器匝数比相关的合适的脉冲宽度调制(PWM)策略来生成多电平波形。与某些常规配置相比,模块化和简单的维护使建议的SAPF成为有吸引力的解决方案。介绍了模型,PWM技术和控制策略,以及考虑了谐波失真和半导体损耗估计的研究。为了验证理论方法,提出了仿真和实验结果。

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