Journal of Engineering and Applied Sciences

Year: 2017
Volume: 12
Issue: 4
Page No. 1040 - 1049

Design of a Three-Phase Buck-Type PFC PWM Rectifier

Authors : E. Jose Peeterson, J. Emerson Raja, J. Hossen, M.N. Ervina Efzan and P. Velrajkumar

References

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Friedli, T., M. Hartmann and J.W. Kolar, 2014. The essence of three-phase PFC rectifier systems-Part II. IEEE. Trans. Power Electron., 29: 543-560.
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Kanchan, R.S., M.R. Baiju, K.K. Mohapatra, P.P. Ouseph and K. Gopakumar, 2005. Space vector PWM signal generation for multilevel inverters using only the sampled amplitudes of reference phase voltages. Proc. IEE Electr. Power Appl., 152: 297-309.
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Kolar, J.W. and T. Friedli, 2013. The essence of three-phase PFC rectifier systems-Part I. IEEE. Trans. Power Electron., 28: 176-198.
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Pratt, A., P. Kumar and T.V. Aldridge, 2007. Evaluation of 400V DC distribution in telco and data centers to improve energy efficiency. Poceedings of the 29th International Conference on Telecommunications Energy (INTELEC) 2007, September 30- October 4, 2007, IEEE, Hillsboro, Oregon, ISBN:978-1-4244-1627-1, pp: 32-39.

Trentin, A., P. Zanchetta, P. Wheeler and J. Clare, 2012. Performance evaluation of high-voltage 1.2 kV silicon carbide metal oxide semi-conductor field effect transistors for three-phase buck-type PWM rectifiers in aircraft applications. IET. Power Electron., 5: 1873-1881.
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