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EMI Filter Design for a 1 MHz, 10 kW Three-Phase/Level PWM Rectifier

机译:1 MHz,10 kW三相/电平PWM整流器的EMI滤波器设计

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The attenuation characteristics of electromagnetic interference (EMI) filters in practice often differ from theoretical predictions and minor changes can result in a significant improvement in performance. The performance of the differential-mode (DM) filter stage can usually be well predicted, but the common mode (CM) behavior is more difficult to handle. This is especially true for three-phase pulsewidth modulation (PWM) rectifier systems, which inherently show a large high-frequency CM voltage at the rectifier output. Possible CM noise current paths of a three-phase/level PWM rectifier are analyzed in this paper where parasitic capacitances to the heat sink and to earth are considered. In addition, a concept to significantly reduce CM emissions is discussed in detail. Based on the proposed models, an EMI filter design for a system with 1 MHz switching frequency is shown. Experimental verification of the designed EMI filter is presented by impedance and conducted emission (CE) measurements taken from a 10 kW prototype. Several practical aspects of filter implementation such as component arrangement, shielding layers, magnetic coupling, etc., are discussed and verified by measurements.
机译:实际上,电磁干扰(EMI)滤波器的衰减特性通常与理论预测有所不同,微小的变化会导致性能显着提高。通常可以很好地预测差模(DM)滤波器级的性能,但是共模(CM)行为更难处理。对于三相脉宽调制(PWM)整流器系统尤其如此,该系统固有地在整流器输出端显示出较大的高频CM电压。本文分析了三相/电平PWM整流器可能的CM噪声电流路径,其中考虑了到散热器和大地的寄生电容。另外,详细讨论了显着减少CM排放的概念。基于建议的模型,显示了具有1 MHz开关频率的系统的EMI滤波器设计。通过从10 kW原型获得的阻抗和传导发射(CE)测量结果,对设计的EMI滤波器进行了实验验证。通过测量讨论并验证了滤波器实现的一些实际方面,例如组件布置,屏蔽层,磁耦合等。

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