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Using the method of the spectral analysis in diagnostics of electrical process of propulsion systems power supply in electric car

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Warianty tytułu
PL
Diagnostyka systemu napędowego z wykorzystaniem analizy spektralnej
Języki publikacji
EN
Abstrakty
EN
In this paper is presented a simulation model of the electric drive (ED) system for the diagnosis of an electric vehicle. Model is built by the method of spectral analysis of the electrical process of propulsion systems power supply. Moreover, the efficiency of ED is a key challenge for the research team. The developed model adequately imitates the electrical processes that occur in the power circuits of the ED system with an AC converter-fed motor. The developed model can be used for virtual studies of dynamic ED modes and studies, and optimization tasks.
PL
Przedstawiono model symulacyjny napędu elektrycznego umożliwiający diagnostykę pojazdów elektrycznych. Model bazuje na analizie widmowej ciągu. Analizowana jest też efektywność napędu. Model mopże także służyć do wirtualnej analizy dynamiki.
Rocznik
Strony
47--50
Opis fizyczny
Bibliogr. 22 poz., rys.
Twórcy
  • Automobile Faculty, Vehicle Electronics Department, Kharkiv National Automobile and Highway University, Yaroslav Mudry str. - 25, Kharkiv, Ukraine, 61002
Bibliografia
  • [1] Patlins A., Arhun S., Hnatov A., Dziubenko O., Ponikarovska S. Determination of the Best Load Parameters for Productive Operation of PV Panels of Series FS-100M and FS-110P for Sustainable Energy Efficient Road Pavement. Proceedings of 2018 IEEE 59th International Scientific Conference on Power and Electrical Engineering of Riga Technical University (RTUCON 2018): Conference Proceedings, Riga, Latvia, 2018, 6 pages.
  • [2] Patlins A., Hnatov A., Arhun S. Safety of Pedestrian Crossings and Additional Lighting Using Green Energy. Proceedings of 22nd International Scientific Conference „Transport Means 2018”, Lithuania, Trakai, Kaunas, 2018, pp. 527–531.
  • [3] Arhun S., Hnatov A., Dziubenko O., Ponikarovska S. A Device for Converting Kinetic Energy of Press Into Electric Power as a Means of Energy Saving. J. Korean Soc. Precis. Eng., vol. 36, no. 1, pp. 105–110, 2019.
  • [4] Zenina, N., Merkurjevs, J., Romanovs, A. TRIP-based Tran Intelligent Transport System Measure Evaluation based on Journal of Simulation and Process Modelling, 2017, Vol.12 2123.
  • [5] Romanovs, A., Pichkalov, I., Sabanovic, E., Skirelis, J. Industry 4.0: Methodologies, Tools and Applications . In: Proceedings of the Open International Information Sciences eStream 2019, Lithuania, Vilniu IEEE, 2019, pp.1-4
  • [6] Zabasta, A., Kondratijevs, K., Kunicina, N., Ribickis, L. Wireless sensor networks and SOA development for optimal control of legacy power grid Proceedings of the 16th International Conference on Mechatronics, Mechatronika 2014 pp. 113-118
  • [7] Romanovs, A., Sokolov, B., Lektauers, A., Potryasaev, S., Interactive Technology for Natural-Technical Objects Integ Computer: Lecture Notes in Computer Science. Vol.8773. Cham: Springer International Publishing AG, 2014. pp.17 e- ISBN 978-3-319-11581-8. Available from: doi:10.1007
  • [8] V. Dvadnenko, S. Arhun, A. Bogajevskiy, and S. Ponikarovska, “Improvement of economic and ecological characteristics of a car with a start-stop system,” Int. J. Electr. Hybrid Veh., vol. 10, no. 3, pp. 209–222, 2018.
  • [9] V. Migal, Shch. Arhun, A. Hnatov, V. Dvadnenko, and S. Ponikarovska, “Substantiating the Criteria For Assessing the Quality of Asynchronous Traction Electric Motors in Electric Vehicles and Hybrid Cars,” J. Korean Soc. Precis. Eng., vol. 10, no. 36, pp. 989–999, 2019.
  • [10] Kowalik B. Introduction to car failure detection system based on diagnostic interface //2018 International Interdisciplinary PhD Workshop (IIPhDW). – IEEE, 2018. – ?. 4-7.
  • [11] Youjun Y. et al. Design and realization of multi-function carcarry fault diagnosis system //Proceedings 2011 International Conference on Transportation, Mechanical, and Electrical Engineering (TMEE). – IEEE, 2011. – ?. 1949-1952.
  • [12] Okrouhlý M., Novák J. Centralized vehicle diagnostics //2013 IEEE 7th International Conference on Intelligent Data Acquisition and Advanced Computing Systems (IDAACS). – IEEE, 2013. – ?. 1. – ?. 353-357.
  • [13] Yang X. et al. Automated test system design based on Tellus for in-vehicle CAN network //2014 6th International Congress on Ultra Modern Telecommunications and Control Systems and Workshops (ICUMT). – IEEE, 2014. – ?. 118-122.
  • [14] Kirthika V., Vecraraghavatr A. K. Design and development of flexible on-board diagnostics and mobile communication for internet of vehicles //2018 International Conference on Computer, Communication, and Signal Processing (ICCCSP). – IEEE, 2018. – ?. 1-6.
  • [15] Husni E. et al. Applied Internet of Things (IoT): car monitoring system using IBM BlueMix //2016 International Seminar on Intelligent Technology and Its Applications (ISITIA). – IEEE, 2016. – ?. 417-422.
  • [16] Vinnikov, D., Roasto, I., Zakis, J., Strzelecki, R. New Step-Up DC/DC Converter for Fuel Cell Powered Distributed Generation Systems: Some Design Guidelines. Journal title: Przeglad Elektrotechniczny ISSN: 0033-2097. Electrical Review , 2010, No.8, 245.-252.pages.
  • [17] Apse-Apsitis, P., Avotinš, A., Ribickis, L., Zakis, J. Develop for SmartGrid Consumer Application. In: Technological In IFIP WG 5.5/SOCOLNET Doctoral Conference on Computin (DoCEIS 2012): Proceedings, Portugal, Costa de Caparica Springer Berlin Heidelberg, 2012, pp.347-354. ISBN 978- 28255-3. ISSN 1868-4238. Available from: doi:10.1007/9
  • [18 ]Apse-Apsitis, P., Vitols, K., Grinfogels, E., Šenfelds, A., Avotinš, A. Electricity Meter Sensitivity and Precision Measurements and Research on Influencing Factors for the Meter Measurements. IEEE Electromagnetic Compatibility Magazine, 2018, Vol.7, Iss.2, pp.48-52. ISSN 2162-2264. Available from: doi:10.1109/MEMC.2018.8410661
  • [19] Svendsen M. et al. Electric vehicle data acquisition system //2014 IEEE International Electric Vehicle Conference (IEVC). – IEEE, 2014. – ?. 1-7.
  • [20] Yang I., Kang K., Lee D. Fault tolerant control using selfdiagnostic smart actuator //2009 ICCAS-SICE. – IEEE, 2009. – ?. 5674-5678.
  • [21] Ю. М. Бороденко, О. А. Дзюбенко, and О. Д. Приходько, “Якісний аналіз гармонійних процесів по колах живлення електроприводу автомобіля,” Автомобиль И Электроника Современные Технологии, vol. 7, pp. 158–163, 2015.
  • [22] Ю. М. Бороденко, “Спектральний аналіз електричних процесів по колах живлення електропривода автомобіля,” Автомобиль И Электроника Современные Технологии Электронное Научное Специализированное Издание–Х ХНАДУ, no. 8, pp. 6–11, 2015.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2020).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-73d5007c-2d8f-4c2c-bc99-303585311d9c
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