Energy-Saving Induction Electrodrive on the Base of the Matrix Frequency Converter

V.N. Meshcheryakov, D.V. Baykov

Abstract


This paper addresses the study with the possibility of building energy-saving induction electrodrive of the base matrix frequency converter in mode Space Vector Modulation. The system Matlab/Simulink simulation model of the system. Simulation results of output voltage and current of the "matrix frequency converter - induction motor " with output frequencies of 25, 50 and 100 Hz, harmonic analysis is made of the output voltage of the converter. The advantages and non-abundance of such a system.


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References


Shreyner R.T., Krivovyaz V.K., Kalygin A.I. Energy-saving industrial asynchronous electric adjustment of the new generation on the basis of a two-tier direct-frequency converters [Energosberegayushchiy promyshlennyy reguliruemyy asinkhronnyy elektroprivod novogo pokoleniya na osnove dvukhzvenno-neposredstvennykh preobrazovateley chastity], Silovaya elektronika [Power electronics], 2007, no. 1, pp. 42-45. (in Russ.)

Klumpner C., Wijekoom T., Wheeler P. A new class of hybrid AC/AC direct power converter, IEEE Industry App. Conference, 2005, vol. 4, pp. 2374-2381. DOI: 10.1109/IAS.2005.1518793

Wheeler P., Grant D. Matrix converters a technology review, IEEE Transactions on Industrial Electronics, 2002, vol. 49, pp. 276. DOI: 10.1109/41.993260

Klimov V.P., Klimova S.V. Bi-directional keys in the matrix structure AC converters [Dvunapravlennye klyuchi v matrichnykh strukturakh preobrazovateley peremennogo toka], Silovaya elektronika [Power electronics], 2008, no. 4, pp. 25-28. (in Russ.)

Vinogradov A.B. New algorithms for space vector control of a matrix frequency converter, Electrical Technology Russia, 2008, no. 3, pp 41-52 (in Russ.)

Baykov D.V., Karasev A.V. Matrix frequency converter – promising solution in the field of energy-saving and time-electric development [Matrichnyy preobrazovatel' chastoty – perspektivnoe reshenie v sfere ekonomii energii i razvitiya elektroprivoda, Trudy VIII Mezhdunarodnoy (XIX Vserossiyskoy) konferentsii po avtomatizirovannomu elektroprivodu AEP-2014 [Proc. of the VIII International (XIX All-Russian) Conference on automated electric drive AEP 2014, Saransk, 2014, pp. 492-494. (in Russ.)

Alesina A., Venturini M. The generalized transformer: a new bi-directional sinusoidal waveform frequency converter with continuous variable adjustable input power factor, IEEE PESC’80, 1980, pp. 242-252. DOI: 10.1109/PESC.1980.7089455

Venturini M. A new sinewave in, sinewave out conversion technique which eliminates reactive elements, Proc. POWERCON’80, 1980, pp. E3/1-E3/15.

Alesina A., Venturini M. Analisys and design of optimum-amplitude nine-switch direct AC-AC Converters, IEEE Transactions on Power Electronics, 1989, vol. 4, no. 1, pp. 101-112. DOI: 10.1109/63.21879

Roy G., Duguay L., Manias S., April G. Asynchronous operation of cycloconverter with improved voltage gain by employing a scalar control algorithm, IEEE IAS Conference Record, 1987, pp. 889-898.

Meshcheryakov V.N., Baykov D.V. Mathematical analysis and modeling of space vector modulated direct controlled matrix converter [Matematicheskiy analiz i modelirovaniya preobrazovatelya chastoty matrichnogo tipa s neposredstvennym upravleniem po metodu prostran-stvenno-vektornoy modulyatsii], Vestnik Yuzhno-uralskogo gosudarstvennogo universiteta. Seriya: Energetika [Bulletin of the South Ural State University. Ser. Power Engineering], 2015, vol. 15, no. 1, pp. 21-33. (in Russ.). DOI:

Vinogradov A.B. Vektornoe upravlenie elektroprivodami peremennogo toka [Vector Control AC Drives], Ivanovo, Ivanovo Power Engineering Institute Publ., 2008, 298 p.




DOI: http://dx.doi.org/10.24892/RIJEE/20150206

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