2005Unpublished venueRequires access

Experiment and Simulation Investigation on Performance of Discrimination Networks for Conductive Electromagnetic Noise

Yang Zhao, Shijin Li, Xue-Mei Shen, Hao Chen

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Abstract

Electromagnetic interference (EMI) noise is classified into two categories: one is radiated emission and the other is conducted emission. In this paper investigation into the performance of discrimination networks for conductive electromagnetic noise is performed by means of experiment and simulation. Comparisons between experiment and simulation results show good agreement. Further research on other influences on performance is also presented. It is proved that the results in the paper can be utilized in solving conductive EMI.

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What this paper is about

Electromagnetic interference (EMI) noise is classified into two categories: one is radiated emission and the other is conducted emission. In this paper investigation into the performance of discrimination networks for conductive electromagnetic noise is performed by means of experiment and simulation. Comparisons between experiment and simulation results show good agreement. Further research on other influences on performance is also presented. It is proved that the results in the paper can be utilized in solving conductive EMI.

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OpenAlex reports 2 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Electromagnetic interference (EMI) noise is classified into two categories: one is radiated emission and the other is conducted emission. In this paper investigation into the performance of discrimination networks for conductive electromagnetic noise is performed by means of experiment and simulation. Comparisons between experiment and simulation results show good agreement. Further research on other influences on performance is also presented. It is proved that the results in the paper can be utilized in solving conductive EMI.

Key concepts: EMI, Electromagnetic interference, Electrical conductor, Noise (video), Conducted electromagnetic interference, Interference (communication), Electromagnetic compatibility, Noise measurement

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