Suggesting a Non-Unity Turn Ratio Two-Winding Coupled Inductor for Filtering CM EMI Noise in an SRC
Предложение двухобмоточного связанного дросселя с неединичным коэффициентом трансформации для фильтрации синфазных электромагнитных помех в последовательном резонансном преобразователе
2023-06-20
SCID: 54.1/sb8sfem7
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20 dB attenuationcommon-mode EMI noisenon-unity turn ratioseries resonant convertertwo-winding coupled inductor
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Abstract (AI)
Switched-mode power supplies (SMPS) are the source of both conducted and radiated electromagnetic interference (EMI) noise. Resonant converters are popular due to the possibility of switching loss reduction using zero voltage switching (ZVS) or zero current switching (ZCS) and also attenuating conducted EMI noise. Conventionally, a common-mode (CM) choke with a single core and two identical windings is used to suppress the CM noise in an EMI filter. This paper introduces an effective and cost-efficient method for mitigating the CM EMI noise in SRCs. The proposed method benefits a two-winding coupled inductor instead of the simple resonant inductor in the SRC. While a unity turn ratio does not meet the desired resonance inductance, the suggested two windings coupled inductor with an unequal number of turns deals with the EMI noise as well as the normal operation of an inductor in the resonant tank. Applying the proposed method significantly achieves up to 20 dB attenuation in the noise amplitude both at the input and output terminals of the converter. Simulations are used for investigating the analysis of the method. Moreover, a series resonant converter is designed and implemented to verify both analysis and simulations.
Key Findings
1
A two-winding coupled inductor with a non-unity turn ratio is proposed to simultaneously provide resonant inductance and suppress common-mode EMI noise in series resonant converters.
2
Simulation analysis and implementation of a series resonant converter verify the proposed method’s operation and noise-reduction performance.
3
The approach is presented as a cost-efficient alternative to conventional common-mode chokes with identical windings for SRC EMI mitigation.
4
The method replaces the conventional simple resonant inductor while avoiding the resonance-inductance limitations associated with unity-turn-ratio windings.
5
The proposed approach achieves up to 20 dB attenuation of common-mode noise amplitude at both the converter’s input and output terminals.
Research Object
series resonant converter (SRC) with a non-unity-turn-ratio two-winding coupled inductor
Research Subject
common-mode conducted EMI noise attenuation and simultaneous resonant-tank inductive operation using the coupled inductor
Publication Details
Publication Date
2023-06-20
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