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A new asymmetrical winding common mode choke capable of attenuating differential mode noise

机译:一种新的不对称绕组共模扼流圈,能够衰减差分模式噪声

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摘要

A new asymmetrical winding Common Mode (CM) choke capable of attenuating the Differential Mode (DM) noise is proposed in this paper. In case of conventional symmetrical winding CM choke, the CM and DM noises are attenuated by the magnetizing and leakage inductors of CM choke, respectively. However, since the number of turns is limited by the shape and size of the CM choke, it is very difficult to obtain the enough leakage inductor to eliminate the DM noise thoroughly. For this reason, the bulky choke should be used for the larger leakage inductor or another choke is usually used for the only DM noise attenuation. Therefore, the cost and size of EMI filter using conventional CM choke might be increased. In order to solve these problems, the asymmetrical winding CM choke is introduced in this paper. Different from the conventional symmetrical CM choke, the magnetizing inductor of the proposed CM choke can suppress not only CM but also DM noise. Therefore, the proposed choke can effectively attenuate the CM and DM noises even with the smaller size and lesser number of turns. It can be applied to the whole kind of power converters which use two or three wire system. To confirm the validity and superiority of the proposed choke, the comparative results of measured total, DM and CM noise characteristics between conventional and proposed chokes are presented. Finally, a practical approach to designing EMI filters and design procedure are proposed and discussed.
机译:本文提出了一种能够衰减差分模式(DM)噪声的新的不对称绕组共模(CM)扼流圈。在传统对称绕组CM扼流圈的情况下,CM和DM噪声分别通过CM扼流圈的磁化和漏电电感器衰减。然而,由于匝数受到CM扼流圈的形状和尺寸的限制,因此非常困难地获得足够的泄漏电感器以消除彻底消除DM噪声。因此,庞大的扼流圈应该用于较大的泄漏电感器,或者另一个扼流圈通常用于唯一的DM噪声衰减。因此,可能会增加使用传统CM扼流圈的EMI滤波器的成本和大小。为了解决这些问题,本文介绍了不对称绕组CM扼流圈。与传统的对称CM扼流圈不同,所提出的CM扼流圈的磁化电感器不仅可以抑制CM,而且可以抑制DM噪声。因此,即使具有较小的尺寸和较小的匝数,所提出的扼流圈即使是较小的尺寸和较小的匝数也能有效衰减CM和DM噪声。它可以应用于使用两种或三根线系统的全种功率转换器。为了确认所提出的扼流圈的有效性和优越性,提出了常规和提出的扼流圈之间测量的总量,DM和CM噪声特性的比较结果。最后,提出并讨论了设计EMI滤波器和设计过程的实用方法。

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