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- W38944804 abstract "This paper investigates the negative effects of electromagnetic interference (EMI) due to fast switching power devices (high dv/dt and di/dt) used in power electronic converters and industrial equipment. Mitigation techniques have been explored to reduce EMI noise effectively. Remedial measures to reduce the risk of equipment malfunction and health risk due to EMI have been explored. In this paper, EMI generation and propagation mechanism, high rates of change of voltage and current in fast switching power devices (such as IGBT), modelling and identifying EMI noise sources and coupling paths have been discussed. A practical EMI measurement system has been suggested to extract more information from EMI noise through analysis in frequency-domain and time-domain, and to test equipment emitting EMI to comply with electromagnetic compatibility (EMC) standards. Different filter topologies have been investigated for minimizing EMI noise and effect of high dv/dt and di/dt due to high frequency switching. dv/ All power electronics equipments generate and emit unwanted electrical signals (EMI noise) that can lead to performance degradation of other electrical/electronic equipments. They generate high- frequency conducted and radiated EMI noise and draw distorted line currents due to the sharp edges of the switching waveforms with high dv/dt. The undesirable EMI effects are interference with wireless systems (e.g., radio, TV, mobile, data transmission), malfunction of biomedical equipments (e.g., cardiac pace maker), misbehaviour of security doors of banks, ABS brake systems of cars, and electronic control systems in airplanes and the increase in power system losses associated with improper performance or failure of a range of industrial power equipments. It is necessary to find a mitigation technique to overcome this problem and to avoid costly equipment failures in industry. To" @default.
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- W38944804 date "2008-01-01" @default.
- W38944804 modified "2023-09-26" @default.
- W38944804 title "Electromagnetic Interference Generated from Fast Switching Power Electronic Devices" @default.
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