PROSPECTS FOR THE DEVELOPMENT OF INDUSTRIAL VEHICLES STARTER-GENERATORS

Authors

  • Н.В. САВОСТЕЕНКО Южно-Уральский государственный университет
  • Ю.С. Усынин Южно-Уральский государственный университет

DOI:

https://doi.org/10.14529/power200411

Keywords:

STARTER-GENERATOR, INDUSTRIAL VEHICLES,, PLANET GEARBOX, DIFFERENTIAL ELECTRIC DRIVE, FIELD REGULATED RELUCTANCE MACHINE

Abstract

The paper considers the requirements for and operation features of the vehicles main electrical elements. It presents the technical and operational characteristics of the storage battery, starter and generator along with the analysis of the current starter-generators state, their advantages and disadvantages in relation to medium-power industrial vehicles. The results obtained allow determining the features and assessing the possibility of implementing a starter generator. It is shown that an attempt to create an electrical complex combining the functions of both a starter and a generator in modern medium-power vehicles (industrial tractors, all-terrain vehicles, etc.), taking into account the capabilities of modern electrical equipment, is hardly rational an complex. The solution could be found within the framework of multiply connected electric drive systems, in particular, based on a differential electric drive using planetary mechanical gears and field regulated reluctance machine. The paper also describes the main advantages and features of the operation of planetary mechanisms ed. A brief description and justification for the choice of a field regulated reluctance machine from the standpoint of the implementation of a starter-generator for industrial vehicles of medium power is given.

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References

Yutt V.E. Elektrooborudovanie avtomobiley [Electrical Equipment of Cars]. 3rd ed. Moscow, Transport

Publ., 2000. 320 p.

Bosch R. Automotive Electric / Electronic Systems, Heidelberg, Springer-Verlag Berlin Publ., 1995.

Chizhkov Yu.P. Elektrooborudovanie avtomobiley i traktorov [Electrical Equipment of Cars and Tractors].

Moscow, Mechanical engineering Publ., 2007. 656 p.

Malyugin P.N., Kovrigin V.A. Elektrooborudovanie avtomobiley [Electrical equipment of cars]. Moscow,

SibADI Publ., 2003. 130 p.

Nabokikh V.A. Elektrooborudovanie avtomobiley i traktorov [Electrical Equipment of Cars and Tractors].

Moscow, Academia Publ., 2004. 105 p.

Denton T. Automobile Electrical and Electronic Systems, Oxford, Routledge Publ., 2012. 685 p.

Schäfer H. Integrierter Starter-Generator (ISG): Das multifunktionale Bindeglied zwischen Bord-Netz und

Antriebsstrang im Kraftfahrzeug. Deutschland, Expert Publ., 2001. 286 p.

Pacheco A.F., Tibola J.R., Martins M.E.S., MacHado P.R.M., Pinheiro H., Gründling H.A. The Use of

a Mean Value Model to Achieve the Best Efficiency of a Variable Speed Generator Coupled to a Diesel Engine.

th SAE BRASIL International Congress and Exhibition, 2012. DOI: 10.4271/2012-36-0333

Kotani Y., Shinogi Y., Nakada Y., Nakagawa Y. Interconnection Technology for Engine Generators.

SAE/JSAE 2003 Small Engine Technology Conference and Exhibition, 2003. DOI: 10.4271/2003-32-0053

Nikolaev V.V. [Research of Operating Modes of a Valve Starter-Generator]. 11-ya Mezhdunarodnaya

nauchno-tekhnicheskaya konferentsiya studentov i aspirantov [11th International Scientific and Technical Conference of Undergraduate and Graduate Students], 2005, pp. 28–29. (in Russ.)

Nikolaev V.V. Starter-generator avtonomnykh ob”yektov na osnove ventil’no-induktornoy mashiny: dis.

kand. tekhn. nauk [Starter-Generator of Autonomous Objects Based on a Valve-Inductor Machine. Cand. sci.

diss.]. Moscow, 2005. 145 p.

Anisimov, V.M. Elektromekhanicheskiye starter-generatornyye sistemy avtomobil’nykh transportnykh

sredstv (Teoriya, proyektirovaniye, issledovaniye): dis. d-ra tekhn. nauk [Electromechanical Starter-Generator Systems of Automobile Vehicles (Theory, Design, Research). Doct. sci. diss.]. Samara, 2004. 378 p.

Anisimov V. M. [Analysis of Design Options For Non-Contact Automobile Valve Starter-Generators of

Direct Current]. Bulletin of the Samara State Aerospace University. Ser. Actual Problems of Radio Engineering,

, iss. 6, pp. 75–81. (in Russ.)

Kappel' A.I. Starter generatory kolen-valovogo tipa (KSG). Osnova budushchikh kontseptsiy [Starter

Crankshaft Generators (KSG). The Basis for Future Concepts]. Germany, Expert Publ., 1999. 120 p.

Kruse R., Schäfer H., Wähner L. [Integrierter Starter-Generator fur das 42-V-Bordnetz]. ATZ:

Automobiltechn. Zeitungshrifte, 2002, no. 7–8, pp. 668–674.

Burenkov K.E., Kupeev Yu.A., Agafonov A.N. [Integrated Starter-Generator - the Basis for Future Vehicle

Designs]. Automotive electrical equipment, 2001, no. 3–4, p. 23. (in Russ.)

Ventil'nye reaktivnye elektrodvigateli / generatory [Switched Reluctance Motors / Generators]. Available

at: http://www.kaskod.ru/produkt/motorsrm/srm_article01/ (accessed 02.09.2020).

Ventil'nyy induktornyy dvigatel' s samopodmagnichivaniem [Valve Inductor Motor with SelfMagnetization]. Available at: http://niiae.ru/ru/napravleniya-raboty/elektrodvigateli/224-2012-03-14-06-40-50

(accessed 02.09.2020).

Usynin Yu.S., Nesmeyanov A.S. [Energy-Power Indicators of a Differential Electric Starter Drive for

Starting an Internal Combustion Engine. Interuniversity collection of scientific papers, 1995, pp. 65–67. (in Russ.)

Usynin Yu. S., Nesmeyanov A.S. Sposob elektricheskogo puska dvigatelya vnutrennego sgoraniya

[Method of Electric Start of an Internal Combustion Engine]. Patent RF no. 2001100773/06, 2002.

Savosteenko N.V., Shishkov A.N., Bychkov A.E. [Starter-Generator Differential Electric Drive of

the Medium-Powered Indastrial Vehilces]. 2019 IEEE Russian Workshop on Power Engineering and Automation

of Metallurgy Industry: Research and Practice, 2019. DOI: 10.1109/peami.2019.8915420

Usynin Yu.S, Shishkov A.N., Belousov E.V., Savoosteenko N.V. Starter-generator s differentsial'nym

elektroprivodom i sposob upravleniya starter-generatorom [A Starter-Generator With a Differential Electric Drive

and a Method of Controlling a Starter-Generator]. Patent RF no. 2019107107, 2020.

Belousov E.V., Savosteenko N.V., Funk T.A., Denisova T.V., Rumyantseva E.A. [Differential twinengine automobile electric drive]. IOP Conference Series: Materials Science and Engineering, 2019. DOI:

1088/1757-899x/537/6/062086

Denton T. Automobile Mechanical and Electrical Systems. 2nd ed, London, Taylor & Francis Ltd Publ.,

United Kingdom, 2017. 368 p.

Antonov A.S. Silovye peredachi kolesnykh i gusenichnykh mashin. Teoriya i raschet [Power Transmissions of Wheeled and Tracked Vehicles. Theory and Calculation]. 2nd ed., Moscow, Mashinostroenie Publ., 1975.

p.

Krasnen'kov V.I., Vashets A.D. Proektirovanie planetarnykh mekhanizmov transportnykh mashin [Design

of Planetary Mechanisms of Transport Machines]. Moscow, Mashinostroenie Publ., 1986. 272 p.

Hu Y., Talbot D., Kahraman A. A load distribution model for planetary gear sets. Journal of Mechanical

Design, 2018, vol. 140, iss. 5. DOI: 10.1115/1.4039337

Chaari F., Abbes M.S., Rueda F.V., Del Rincon A.F., Haddar M. Analysis of planetary gear transmission

in non-stationary operations. Frontiers of Mechanical Engineering, 2013, no. 8 (1), pp. 88–94. DOI:

1007/s11465-013-0361-8

Sharipov V.M., Gorodetskiy K.I., Marinkin A.P., Naumov E.S., Parfenov A.P., Sergeev A.I., Strelkov A.G.,

Feofanov Yu.A. Sharipova N.N., Shevelev A.S., Shchetinin Yu.S. Ustroystvo traktorov [Construction of tractors].

Moscow, Moscow State Technical University, 2007. 320 p.

Kozlovskiy V. N., Yutt V. E. [Assessment of the Influence of the Dimensional Parameters of the Core of

an Automobile Starter-Generator Device on its Technical Characteristics]. Elektronika i elektrooborudovanie

transporta [Electronics and Electrical Equipment of Transport], 2009, no. 2–3, pp. 14–16. (in Russ.)

Usynin Yu.S., Grigor'ev M.A., Vinogradov K.M. [Electric Drives and Generators with Independent Excitation Synchronous Reluctance Machine]. Elektrichestvo [Electricity], 2007, no. 3, pp. 21–26. (in Russ.)

Usynin Yu.S., Grigor'ev M.A., Shishkov A.N. [Valve Electric Drive with a Synchronous Reluctance Machine of Independent Excitation]. Elektrotekhnika [Electrical engineering], 2013, no. 3, pp. 37–43. (in Russ.)

Grigor'ev M.A., Usynin Yu.S. (Ed.). Ventil’nyy elektroprivod s sinkhronnoy reaktivnoy mashinoy

nezavisimogo vozbuzhdeniya: monogr. [Valve Electric Drive with a Synchronous Reluctance Machine of Independent Excitation: Monograph]. Chelyabinsk, South Ural St. Univ. Publ., 2010. 159 p.

Usynin Yu.S. [Multiply Connected Control Systems of Electric Drives with a Synchronous Reluctance

Machine of Independent Excitation]. Elektrotekhnika [Electrical engineering], 2014, no. 10, pp. 49–53. (in Russ.)

Published

2020-12-31

How to Cite

[1]
САВОСТЕЕНКО, Н. and Усынин, Ю. 2020. PROSPECTS FOR THE DEVELOPMENT OF INDUSTRIAL VEHICLES STARTER-GENERATORS. Bulletin of the South Ural State University series "Power Engineering". 20, 4 (Dec. 2020), 96–102. DOI:https://doi.org/10.14529/power200411.

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