EMI Estimation for DC/AC Hard Switching Converter Using Wiener Filter
Piotr Musznicki, Jean‐Luc Schanen, Pierre Granjon, Piotr J. Chrzan
Abstract
Piotr Musznicki, Jean‐Luc Schanen, Pierre Granjon, Piotr J. Chrzan
Abstract
This paper describes how the use of a specific signal processing method can help to estimate and understand the Electromagnetic Interference (EMI) generation of a switched mode power supply. This method allows to estimate, from EMI measurements, the different transfer functions between each source of disturbance and the disturbances themselves. Thus, the EMI signals is decomposed and combined with independent source of disturbances. This method is based on the redefinition of the voltage source inverter switching states, and on the Wiener filtering theory. This new tool for fast EMI estimation and prediction is first described, and its performance is illustrated on simulated and measured data.
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This paper describes how the use of a specific signal processing method can help to estimate and understand the Electromagnetic Interference (EMI) generation of a switched mode power supply. This method allows to estimate, from EMI measurements, the different transfer functions between each source of disturbance and the disturbances themselves. Thus, the EMI signals is decomposed and combined with independent source of disturbances. This method is based on the redefinition of the voltage source inverter switching states, and on the Wiener filtering theory. This new tool for fast EMI estimation and prediction is first described, and its performance is illustrated on simulated and measured data.
Key concepts: EMI, Electromagnetic interference, Filter (signal processing), Electronic engineering, Computer science, Inverter, Wiener filter, Common-mode signal