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Design and Simulation of Cyclic Battery Tester

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The paper presents an approach to the modelling of a cyclic battery tester and contains observations about lithium-ion (Li-ion) batteries, charging/discharging procedures, conditions and protections which must be observed during the testing process. The main goal was to create and simulate a schematic which will be capable of cyclically testing Li-ion battery cells. Regulation of the final schematic is based on cascade connections of operation amplifiers, which work as a voltage source with current-limiting functions. The power part is created by two MOSFETs connected as a half-bridge. This topology allows current to flow in both directions (from and to the battery). Final simulation is supplemented by protections such as reverse polarity protection, short circuit protection and overvoltage protection during charging. Proper operation of the whole connection is demonstrated by the simulation outputs in the final section.
Słowa kluczowe
Wydawca
Rocznik
Strony
229--241
Opis fizyczny
Bibliogr. 15 poz., rys.
Twórcy
  • Department of Electrical Engineering and Mechatronics, Faculty of Electrical Engineering and Informatics, Technical University of Košice, Letná 9, 042 00, Košice, Slovak Republic
autor
  • Department of Electrical Engineering and Mechatronics, Faculty of Electrical Engineering and Informatics, Technical University of Košice, Letná 9, 042 00, Košice, Slovak Republic
Bibliografia
  • Anon. (2020). The BatteryGuy.com Knowledge Base, [online]. Available at: https://batteryguy.com/kb/knowledge-base/a-history-of-the-battery/
  • Bil’anský, J., 2020. Overview of the Battery Types and their Testing. In: SCYR - Nonconference Proceedings of Young Researchers. Košice: s.n., pp. 143-146.
  • Hsieh, Y.-C., Wu, J.-L. and Kuo, Q.-Y. (2011). A Li-ion battery string protection system. In: International Conference on Applied Electronics. Pilsen, Czech Republic:s.n., pp. 1–4.
  • INR18650-25R. (2014). Samsung SDI Co., Ltd. [online]. Available at: https://www.tme.eu/Document/d5041798b41b6ad5e98cd9d1377d272d/ INR18650-25R.pdf.
  • IRF9Z24. (2019). Vishay Intertechnology, Inc. [online]. Available at: https://www.vishay.com/docs/91090/91090.pdf.
  • IRFZ34. (2019). Vishay Intertechnology, Inc. [online]. Available at: https://www.vishay.com/docs/91290/ 91290.pdf.
  • Khan, A. B., Phan, V. L., Nguyen, T. T. and Choi, W. (2016). Multistage constant-current charging method for Li-ion batteries. In: IEEE Transportation Electrification Conference and Expo. Asia-Pacific (ITEC Asia-Pacific): s.n., pp. 381–385.
  • Luan, Shang-Wen, Teng, Jen-Hao, Lee, Dong-Jing; Huang, Yong-Qing, Sung, Chen-Lin, (2011). Charging/discharging monitoring and simulation platform for Li-ion batteries. In: TENCON IEEE Region 10 Conference. Bali, Indonesia:s.n., pp. 868–872.
  • Mahmoud, A. M. and Osama, M. (2011). A Three-Phase High Frequency Semi-Controlled Battery Charging Power Converter for Plug-In Hybrid Electric Vehicles. Journal of Power Electronics, 11, pp. 2641–2648.
  • Meena, N., Baharwani, V., Sharma, D., Sharma, A., Choudhary, B., Parmar, P., Stephen, R. B., (2014). Charging and discharging characteristics of Lead acid and Li-ion batteries. In: Power and energy systems: Towards sustainable energy. Bangalore, India:s.n., pp. 1–3.
  • Si7858BDP. (2019). Vishay Intertechnology, Inc. [online]. Available at: https://www.vishay.com/docs/66589/si7858bd.pdf.
  • Tar, B. and Fayed, A. (2016). An overview of the fundamentals of battery chargers. In: IEEE 59th International Midwest Symposium on Circuits and Systems (MWSCAS). Abu Dhabi, United Arab Emirates:s.n., pp. 1–4.
  • Wey, C. and Jui, P. (2013). A unitized charging and discharging smart battery management system. In: International Conference on Connected Vehicles and Expo (ICCVE). Las Vegas, NV, USA:s.n., pp. 903–909.
  • Xiong, J., Banvait, H., Li, L., Chen, Y., Xie, J., Liu, Y., Wu, M., Chn, J., (2012). Failure detection for over-discharged Li-ion batteries. In: IEEE International Electric Vehicle Conference. Greenville, SC, USA:s.n., pp. 1–5.
  • Ye, Z., Wu, X., Sun, Y. and Lu, J. (2010). A universal protection controller for Li-ion battery charger. In: Asia-Pacific Power and Energy Engineering Conference. Chengdu, China:s.n., pp. 1–4.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-cb810ff6-4f8f-475c-90bf-848a43cf54d8
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