Abstract
Principles of electric power generation by power supply systems based on self-excited electrical machines are presented in this paper. Functioning conditions of aircraft power supply systems were analyzed. Advantages and disadvantages of permanent magnet synchronous generators were revealed. Similarity of self-exciting processes in DC electrical machines – induction and hysteresis synchronous ones – is revealed. Block diagrams that show similarity of self-exciting processes in DC generator – induction and hysteresis synchronous ones – from the automatic control theory point of view are provided. It is shown that the controlled generation systems contained semiconductor converters are possible to be constructed. References 8, figures 2.
References
Voldek A.I. Electrical Machines. − Leningrad: Energiia, 1974. − 840 p. (Rus)
Garganeev A.G., Brovanov S.V., Kharitonov S.A. Hysteresis-Synchronous Motor Mechatronic Systems. − Tomsk: Izdatelstvo Tomskogo Polytechnicheskogo Universiteta, 2012. − 227 p. (Rus)
Garganeev A.G., Kharitonov S.A. Efficiency of Mechatronic System for DC Electric Power Generation // Izvestiia Tomskogo Polytechnicheskogo Universiteta. − 2010. − Vol. 319. − No. 4. − Pp. 139−143. (Rus)
Garganeev A.G., Kharitonov S.A. Advanced Power Supply Systems of All-Electric Aircrafts // Doklady Tomskogo Gosudarstvennogo Universiteta Radioelectroniki i Sistem Upravleniia. − 2009. − No. 2 (20). − Pp. 185–192. (Rus)
Gruzkov S.A. Electrical Equipment of Aircrafts. Vol. 1. Aircraft Power Supply Systems. − Moskva: Izdatelstvo Moskovskogo Energeticheskogo Instituta, 2005. – 568 p. (Rus)
Delektorskii B.A., Tarasov V.N. Controlled Hysteresis Drive. – Moskva: Energoatomizdat, 1983. − 128 p. (Rus)
Kharitonov S.A. Electromagnetic Processes in Power Generating Systems For Stand-Alone Unit. − Novosibirsk: Izdatelstvo Novosibirskogo Gosudarstvennogo Tekhnicheskogo Universiteta, 2011. − 536 p. (Rus).

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