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Further Reading

Оглавление

1 Ćuk, S. (1979). General topological properties of switching structures. Proceedings of the IEEE Power Electronics Specialists Conference, pp. 109–130.

2 Darwin, C. (1993). On The Origin of Species. Norwalk, CT: The Easton Press (MBI, Inco).

3  Erickson, R.W. (1983). Synthesis of switched‐mode converters. Proceedings of the IEEE Power Electronics Specialists Conference, pp. 9–22.

4 Freeland, S.D. (1992). Techniques for the practical applications of duality to power circuits. IEEE Trans. Power Electron. 7 (2): 374–384.

5 Hopkins, D.C. and Root, D.W. Jr. (1994). Synthesis of a new class of converters that utilize energy recirculation. Proceedings of the IEEE Power Electronics Specialists Conference, pp. 1167–1172.

6 Lin Wang, Y.‐Y., Chang, S.‐L., Wu, Y.‐E. et al. (1991). Resonance‐the missing phenomena in hemodynamics. Circ. Res. 69: 246–249.

7 Liu, K.‐H. and Lee, F.C. (1988). Topological constraints on basic PWM converters. Proceedings of the IEEE Power Electronics Specialists Conference, pp. 164–172.

8 Maksimovic, D. and Ćuk, S. (1989). General properties and synthesis of PWM DC‐to‐DC converters. Proceedings of the IEEE Power Electronics Specialists Conference, pp. 515–525.

9 Schrödinger, E. (1944). What Is Life? Cambridge University Press.

10 Severns, R.P. and Bloom, G.E. (1985). Modern DC‐to‐DC Switch Mode Power Converter Circuits. New York: Van Nostrand Reinhold Co.

11 Tymerski, R. and Vorperian, V. (1986). Generation, classification and analysis of switched‐mode DC‐to‐DC converters by the use of converter cells. Proceedings of the International Telecommunications Energy Conference, pp. 181–195.

12 Wu, T.‐F. and Yu, T.‐H. (1998). Unified approach to developing single‐stage power converters. IEEE Trans. Aerosp. Electron. Syst. 34 (1): 221–223.

Origin of Power Converters

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