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Modeling and Stability Analysis of Voltage Sensing based Differential Mode Active EMI Filters for AC-DC Power Converters

机译:基于电压感测的AC-DC电源转换器差模有源EMI滤波器的建模和稳定性分析

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Passive EMI filters occupy significant volume in a power converter. Active EMI Filters (AEF) are a means to reduce the volume of passive filter components. It is essential to identify the boundaries within which the AEF could be designed and the possible volume reduction that is achievable. This work involves the modeling and stability analysis of Feedback Voltage Sense Current Cancellation (VSCC) Active EMI Filters. Type of applications that benefit from using voltage sensing over current sensing for is identified. An example of a non-PFC AC-DC converter is considered. Noise sensing networks comprising high voltage capacitors and high pass filter networks are designed for sensing noise. The overall filter implementation is modeled, and stability analysis is carried out. Suitable compensation networks are designed to make the filter viable. Major bottlenecks that limit the maximum attenuation are identified and general guidelines for the application of Feedback VSCC topology are proposed.
机译:无源EMI滤波器在功率转换器中占据相当大的体积。有源EMI滤波器(AEF)是一种减少无源滤波器组件体积的方法。确定可设计AEF的边界以及可能实现的体积减小是至关重要的。这项工作涉及反馈电压检测电流消除(VSCC)有源EMI滤波器的建模和稳定性分析。确定了受益于使用电压检测而不是电流检测的应用类型。考虑非PFC AC-DC转换器的示例。包括高压电容器和高通滤波器网络的噪声感测网络被设计用于感测噪声。对整个滤波器的实现进行建模,并进行稳定性分析。设计了合适的补偿网络以使滤波器可行。确定了限制最大衰减的主要瓶颈,并提出了反馈VSCC拓扑应用的一般准则。

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