A Study on Reliability Test of Super-Capacitor for Electric Railway Regenerative Energy Storage System

전동차 회생에너지 저장 시스템용 슈퍼커패시터의 신뢰성시험에 관한 연구

  • Lee, Sang-Min (Battery Assessment Team, IT Convergence Center, Chungbuk Technopark) ;
  • Kim, Nam (Chungbuk University)
  • Received : 2016.08.29
  • Accepted : 2016.09.12
  • Published : 2016.09.25

Abstract

Purpose: Domestic electric railway Regenerative Energy Storage System seriously affects the maintenance cost of the total operating expenses of nearly 60% of the total LCC (Life Cycle Cost) due to high dependence on foreign Leading company. Therefore by developing the system, it is important to lower the maintenance cost in the domestic supply. This study about the capacitor Reliability test and the purpose of this study is development electric railway Regenerative Energy Storage System. Methods: In case of, having a close relation between the temperature and the reaction rate, Accelerated Model was known that according to Arrhenius' law of chemical activity. If you apply this formula in using allowable temperature range of the capacitor can induce the Arrhenius empirical formula used in much Manufacture Fields. We evaluate the capacitors Leading company through the Arrhenius model. in order to providing a base for the localization of Ultra Capacitor. Conclusion: In this paper, we conducted a reliability test. And it was performed by the accelerated life test and Cycle Test with temperature and C-rate. and then MTBF and B10 life are estimated by analyzing the accelerated life test result. This is thought to need detailed study applying complex stress than about whether it matches the actual behavior in electric railway.

Keywords

References

  1. An, K. H. (2003). "Storage Technology using Carbon Materials". pp. 28-29.
  2. Jung, J. H. and Kim, M. S. (2012). "An Accelerated Degradation Test of Electric Double-Layer Capacitors". Journal of Applied Reliability, Vol 12, No.2, pp. 67-78.
  3. Park, J. W. and Lee, J. H. (2002). "Development of Accelerated Life Tests for Aluminum Electrolyte Capacitor Made by Domestic Manufacturing Company and Comparison of Characteristics between Domestic Products and Foreign Advanced Products". Journal of the Applied Reliability, Vol. 2, No. 1, pp. 1-14.
  4. Smith, D. J. (2011). "Reliability, maintainability and risk: Practical methods for engineers." Elsevier, pp. 181-184.
  5. Han, J. H., Bae, C. H. and Koo, J. S. (2014). "A Study on the Reliability Prediction and Lifetime of the Electrolytic Condenser for EMU Inverter". Journal of the Korean Society of Safety, Vol. 29, No. 1, pp. 7-14. https://doi.org/10.14346/JKOSOS.2014.29.1.007
  6. Jun, T. B. (2010). "Electrical/Electronic System Reliability Prediction". Gyowoosa, p. 182.
  7. Korea coil Engineering Co. (2003). "Reliability and Accelerated Test Methods for Magnetic Components". p. 14.
  8. Kim, J. G. and Park, Y. J. (2009). "Analysis of hrs Thermal Distribution by the Variance of Voltage & Frequency". Proceedings of KIIEE Annual Conference, p. 465.
  9. RS-KTL-2010-0007:2010 "Electric Double Layer Capacitor". Korea Testing Laboratory.