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Controller design and implementation of a three-phase Active Front End using SiC based MOSFETs

机译:使用基于SiC的MOSFET的三相有源前端的控制器设计和实现

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The design and implementation of a three phase Active Front End for power factor correction purposes using fast switching SiC based MOSFETs is presented. Possible applications are within the drives- and renewable energy sector. The controller is designed and implemented in the synchronous rotating reference frame. Besides the theoretical modelling the controller is optimized through simulations and implemented on a low cost DSP processor using a visual programming language - here MATLAB/SIMULINK - with automatic code generation for embedded targets. The paper illustrates the advantages of power factor correction for an active rectifier in comparison to a passive rectifier. The SiC based power switches thereby offer the possibility of using high switching frequencies leading to a reduction in filter size - here a simple L filter. The controller is able to validate the simulation results and improve the power factor and THD level significantly.
机译:提出了一种基于有源开关的基于SiC的MOSFET的三相有源前端的设计和实现,用于功率因数校正。可能的应用在驱动器和可再生能源领域。该控制器是在同步旋转参考系中设计和实现的。除了理论模型外,控制器还通过仿真进行了优化,并在低成本DSP处理器上使用可视化编程语言(此处为MATLAB / SIMULINK)实现,并为嵌入式目标自动生成了代码。本文说明了与无源整流器相比,有源整流器的功率因数校正的优势。因此,基于SiC的功率开关提供了使用高开关频率的可能性,从而减小了滤波器的尺寸,在这里是简单的L滤波器。控制器能够验证仿真结果并显着提高功率因数和THD水平。

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