Abstract
Continuing work on the development of the technology of electric-power converters indicates the desirability of relatively high internal operating frequencies in order to satisfy a number of advantageous system characteristics. It appears desirable to equip these power converters with a number of properties which are summarized in the following paragraph.
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References
F.C. Schwarz and N.C. Voulgaris, “A Wide-Band Wattmeter for the Measurement and Analysis of Power Dissipation in Semiconductor Switching Devices,” IEEE Trans. Electron Devices, ED-17, No. 9 (September 1970) 750–755.
F.C. Schwarz, “An Improved Method of Resonant Current Pulse Modulation for Power Converters,” IEEE Trans. Industr. Electr. and Contr. Instr., IECI-23, No. 2 (May 1976) 133–141.
F.C. Schwarz and W.L. Mo’ize de Chateleux, “A Multikilowatt Polyphase AC/DC Converter with Reversible Power Flow and without Passive Low Frequency Filters,” Proceedings 10th IEEE Power Electronics Specialists Conf. (PESC), San Diego, U.S.A., June 1979.
F.C. Schwarz and J.B. Klaassens, “A Controllable 45-kW Current Source for DC Machines,” IEEE Trans. Industr. Applic, IA-15, No. 4 (July/August 1979) 437–444.
F.C. Schwarz and J.B. Klaassens, “A Reversible Smooth Current Source with Momentary Internal Response for Nondissipative Control of Multikilowatt DC Machines,” IEEE Trans. Power App. and Systems, PAS-100, No. 6 (June 1981) 3008–3016.
F.C. Schwarz, “Analog Signal to Discrete Time Interval Converter (ASDTIC),” U.S. Patent No. 3,659, 184, April 1972.
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© 1982 Plenum Press, New York
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Schwarz, F.C. (1982). Converters with High Internal Frequency. In: Sittig, R., Roggwiller, P. (eds) Semiconductor Devices for Power Conditioning. Earlier Brown Boveri Symposia. Springer, Boston, MA. https://doi.org/10.1007/978-1-4684-7263-9_6
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DOI: https://doi.org/10.1007/978-1-4684-7263-9_6
Publisher Name: Springer, Boston, MA
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