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Design and experimental analysis of a three-phase active CM/DM conducted EMI noise separator

机译:三相活性CM / DM的设计和实验分析进行EMI噪声分离器

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This work investigates three-phase electromagnetic interference (EMI) conducted emission (CE) measurements with the aim to separate the noise voltages in their common-mode (CM) and differential-mode (DM) parts. By doing so, the converter input and/or output filter stages can be individually optimized to improve the CM or DM attenuation depending on the origin of the CE disturbances. An overview of various ways to achieve this separation is provided and an active three-phase noise separator is presented. The main advantage of the presented active solution is the absence of magnetic components in the signal path which drastically facilitates the matching at high frequencies. The influence of asymmetries and mismatches of the component parasitics as well as in the circuit board layout are analyzed. To assess the performance of the proposed system according to widely known metrics such as CM and DM transfer functions and rejection ratios, different test methods are established and the implied limitations regarding maximum measurable performance are considered. Finally, experimental results verifying the calculated separation capabilities are provided.
机译:该工作调查了三相电磁干扰(EMI)进行了发射(CE)测量,目的是将噪声电压分离为它们的共模(CM)和差分模式(DM)部件。通过这样做,转换器输入和/或输出滤波器级可以单独优化,以提高CM或DM衰减,这取决于CE干扰的起源。提供了各种方式实现该分离的方式概述,并呈现有源三相噪声分离器。所呈现的活性解决方案的主要优点是信号路径中没有磁性分量,其易于促进高频匹配。分析了不对称和组分寄生虫的不匹配以及在电路板布局中的影响。为了评估所提出的系统的性能,根据诸如CM和DM传递函数和抑制比等众所周知的度量,建立了不同的测试方法,并且考虑了关于最大可测量性能的隐含限制。最后,提供了验证计算分离能力的实验结果。

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