SEPIC Converter with an LC Regenerative Snubber for EV Applications
Autor: | Omar Hegazy, Salih Baris Ozturk, Ahmet Aksoz, Abdalkreem Kasasbeh, Burak Kelleci |
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Přispěvatelé: | Electromobility research centre, Electrical Engineering and Power Electronics |
Rok vydání: | 2020 |
Předmět: |
Control and Optimization
Materials science Spice snubber circuit Energy Engineering and Power Technology SEPIC converter 02 engineering and technology Inductor EMI suppression lcsh:Technology Electromagnetic interference law.invention EMI law 0202 electrical engineering electronic engineering information engineering Snubber Electrical and Electronic Engineering Engineering (miscellaneous) lcsh:T Renewable Energy Sustainability and the Environment business.industry 020208 electrical & electronic engineering electric vehicle Electrical engineering Capacitor regenerative snubber Transient (oscillation) business Energy (miscellaneous) Voltage |
Zdroj: | Energies; Volume 13; Issue 21; Pages: 5765 Energies, Vol 13, Iss 5765, p 5765 (2020) |
ISSN: | 1996-1073 |
DOI: | 10.3390/en13215765 |
Popis: | A Single-Ended Primary-Inductor Converter (SEPIC) converter with an Inductor-Capacitor (LC) regenerative snubber is proposed to reduce Electromagnetic Interference (EMI) for Electric Vehicle (EV) applications. The switching energy is transferred through a capacitor to an inductor which is coupled to SEPIC inductors. This technique reduces the number of components and also returns some of switching energy to SEPIC converter. The mathematical analysis and optimization of LC snubber with respect to number of turns is also presented. Spice simulations and experimental results are provided to verify its performance. The proposed LC regenerative snubber reduces the peak voltage by 16 V on the switching transistor during the switching transient. It is also indicated that 8 dB reduction is achieved in the EMI measurements at ringing frequency and 10 dB reduction at high frequency band. |
Databáze: | OpenAIRE |
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