Energy-Saving Electric Drive on the Basis of Back to Back Converter

A.S. Maklakov, V.R. Gasiyarov, А.V. Belyi

Abstract


Functional possibilities of electric drive on base of back to back converter were considered from the point of view of energy saving. The studies were carried out by mathematical modeling in the Matlab/Simulink program. On the basis of studies on the simulation model the controlling of power factor of PWM boost rectifier can be used for reactive power compensation in AC mains were determined. Back to back converters can be actively used in operation of supply power system of enterprise as they are able to provide controlled power factor and bidirectional power flow. The control system of PWM boost rectifier can be used to realize four-quadrant controlling of electric drive. Integration prospects of electric drives based on back to back converters in an industrial smart grid were defined.

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References


Kabyshev A.V. Kompensatsiya reaktivnoy moshchnosti v elektroustanovkakh promyshlennykh predpriyatiy: uchebnoye posobiye [Reactive power compensation in electrical installation of industrial enterprises: tutorial], Tomsk, TPU Publ., 2012, 234 p.

Nikolaev A.A., Kornilov G.P., Ivekeev V.S., Lozhkin I.A., Kotyishev V.E., Tukhvatullin M.M. Using of the static var compensator of the ultra-high power electric arc furnace for supporting of electrical power system’s stability and increasing reliability of factory power supply, Russian Internet Journal of Industrial Engineering, 2014, no. 1, pp. 59-69. DOI: 10.24892/RIJIE/20140108

Kornilov G.P., Khramshin T.R., Shemetov A. N., Zhuravlev Yu. P., Murzikov A.A. Modern methods of reactive power compensation of big metallurgical electric drives [Sovremennyye sposoby kompensatsii reaktivnoy moshchnosti krupnykh metallurgicheskikh privodov], Izvestiya vysshikh uchebnykh zavedeniy. Elektromekhanika [News of Universities. Electromechanics], 2009, no. 1, pp. 28-31.

Vinogradov A.B. Vektornoye upravleniye elektroprivodami peremennogo toka [Vector Control AC Drives], Ivanovo, IGEU im. V.I. Lenina Publ., 2008, 298 p.

Maklakov A.S. Radionov A.A. Influence of AFE rectifier with different types of PWM on supply power, Russian Internet Journal of Industrial Engineering, 2013, no. 2, pp. 40-47. DOI: 10.24892/RIJIE/20130206

Radionov A.A., Maklakov A.S. Research of influence on the three-level network active rectifier based on eighteen pulse rectifier circuit [Issledovaniye vliyaniya na set trekhurovnevogo aktivnogo vypryamitelya na baze vosemnadtsatipulsnoy skhemy vypryamleniya], Sbornik trudov Mezhdunarodnoy nauchno-tekhnicheskoy konferentsii im. Leonardo da Vinchi [Proceedings of the International Scientific and Technical Conference them. Leonardo da Vinci.], Wissenschaftliche Welt, 2013, vol. 1, pp. 176-178.

Maklakov A.S. Analysis of PWM Boost Rectifier in modes of reactive power compensation, Russian Internet Journal of Industrial Engineering, 2013, no. 1, pp. 43-50. DOI: 10.24892/RIJIE/20130107

Radionov A.A., Maklakov A. S. Reactive power compensation in grid using active front end converter [Kompensatsiya reaktivnoy moshchnosti v seti s pomoshchyu aktivnogo vypryamitelya napryazheniya], Elektrotekhniches-kiye sistemy i kompleksy [Electrical systems and complexes], Magnitogorsk, MGTU im. G.I. Nosova, 2013, is. 21, pp. 226-231.

Radionov A.A., Maklakov A.S. Possibility of reactive power compensation in power supply by using electric drive on base AC-DC-AC converter [O vozmozhnosti kompensatsii reaktivnoy moshchnosti v seti posredstvom elektroprivoda na baze AC-DC-AC preobrazovatelya], Izvestiya vysshikh uchebnykh zavedeniy. Elektromekhanika [News of Universi-ties. Electromechanics], 2014, no. 2, pp. 78-83.

Khramshin T.R., Kornilov G.P., Khramshin R.R. Calculation of electromagnetic processes in a three-phase two-level voltage inverter [Raschet elektromagnitnykh protsessov v trekhfaznom dvukhurovnevom invertore napryazheniya], Elektrotekhnicheskiye sistemy i kompleksy [Electrical systems and complexes], 2010, no. 1, 212 p.

Kornilov G.P., Nikolaev A.A., Khramshin T.R., Murzikov A.A. Modelirovaniye elektrotekhnicheskikh kompleksov metallurgicheskikh predpriyatiy: ucheb. posobiye [Simulation of electrical systems of metallurgical enterprises: tutorial], Magnitogorsk, MGTU im. G.I. Nosova, 2012, 235 p.

Khramshin T.R., Kornilov G.P., Nikolaev A.A., Khramshin R.R., Krubtsov D.S. Investigation of the influence high power active front end rectifier [Issledovaniye vozdeystviya aktivnykh vypryamiteley bolshoy moshchnosti na pitayushchuyu set], Vestnik Ivanovskogo gosudarstvennogo energeticheskogo universiteta [Herald Ivanovo State Power University], 2013, no. 1, pp. 80-83.

Shreyner R.T. Matematicheskoye modelirovaniye elek-troprivodov peremennogo toka s poluprovodnikovymi preobrazovatelyami chastity [Mathematical modeling of AC drives with semiconductor frequency converters], Yekaterenburg, URO RAN Publ.. 2010, 654 p.

Teodorescu R, Liserre M., Rodr?guez P. Grid converters for photovoltaic and wind power systems, UK, John Wiley & Sons, Ltd., 2011, 398 p. DOI: 10.1002/9780470667057

Radionov A.A., Maklakov A.S., Belyi A.V. PWM boost rectifier as object of controlling [Aktivnyy vypryamitel napryazheniya kak obyekt upravleniya], Avtomatizirovannyye tekhnologii i proizvodstva [Automated technologies and production], 2014, vol. 6, no. 21, pp. 226-231.

Maklakov A.S., Gasiyarov V.R., Karyakina Ye.A. Analysis of the conditions of AFE rectifier in different modes [Analiz usloviy raboty AFE vypryamitelya v razlichnykh rezhimakh], Aktualnyye problemy sovremennoy nauki tekhniki i obrazovaniya: materialy 71-y mezhregionalnoy nauchno-tekhnicheskoy konferentsii [Actual problems of modern science and technology education: Proceedings of the 71st inter-regional scientific and technical conference] Magnitogorsk, 2013, vol. 2, pp. 15-18.

Park R.H. Two-Reaction Theory of Synchronous Machines: Generalized Method of Analysis – Part I, Transactions of the AIEE 48, 1929, pp. 716-730. DOI: 10.1109/T-AIEE.1929.5055275




DOI: http://dx.doi.org/10.24892/RIJEE/20140104

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