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A Study on Reliability Prediction of Product with Dormant Phase

  • 김연수 (인천대학교 산업경영공학과) ;
  • 정영배 (인천대학교 산업경영공학과)
  • Kim, Yon-Soo (Department of Industrial and Management Engineering, University of Incheon) ;
  • Chung, Young-Bae (Department of Industrial and Management Engineering, University of Incheon)
  • 투고 : 2012.08.15
  • 심사 : 2012.08.30
  • 발행 : 2012.09.30

초록

The purpose of this paper is to examine the effects on reliability of equipment or product which spends a great deal of its time in the dormant condition. Many systems experienced periods of dormancy throughout their life cycle, such as periods of operational storage where the system waits, ready for use. The design of such systems must account for how these period of dormant effects system performance. The methodology for predict and analysis was developed to support the evaluation of dormant modes of operation of systems and subsystems. For proper handling of the dormant environment, issues relating to dormant failures need to be taken into consideration from design stage of the lifecycle. Furthermore, the relevant environmental concerns that need to be taken into consideration depend on the environmental factors associated with each different target environment. This paper will look at dormant reliability, the possible dormant reliability models and the methodology on life cycle reliability which has different dormant phase.

키워드

참고문헌

  1. ALD Software, http://www.aldservice.com, 2012.
  2. Carchia, M.; "Non-operating Reliability," 1999, http://www.ece.cmu.edu/-koopman/des_s99/non_operating.
  3. Harris, A. P.; "Reliability in the dormant condition," Microelectronics and Reliability, 20 : 33-44, 1980. https://doi.org/10.1016/0026-2714(80)90521-1
  4. John, T. Walsh; "System Reliability Analysis for Dormant and Semi-Dormant Operation of Complex Systems," SIG Technology Review, 65-78, Winter, 1996.
  5. Kasouf, G.; "R/M Design for Long Term Dormant Storage," Proceedings of Annual Reliability and Maintainability Symposium, 168-175, 1984.
  6. Kolarik, W., Fant, E., and McCoun, K.; "Early Design Phase Life Cycle Reliability Modeling," Proc. Ann. Reliability and Maintainability Symp, 335-340, 1988.
  7. Kolarik, W. and Landers T. L.; "Proportional Hazards and MIL-HDBK-217," Microelectronics Reliability, 26(4) : 763-771, 1986. https://doi.org/10.1016/0026-2714(86)90019-3
  8. Martinez, E. C.; "Storage Reliability With Periodic Test," Proceedings of Annual Reliability and Maintainability Symposium, 181-185, 1984.
  9. NASA; Designing for Dormant Reliability, Johnson Space Center, Guideline No. GD-ED-2207.
  10. Quanterion; Reliability Toolkit : Commercial Practices Edition, Reliability Analysis Center, 1997.
  11. Rooney, J. P.; "Storage Reliability," Proceedings of Annual Reliability and Maintainability Symposium, 178-182, 1989.
  12. Trapp, R. D., Farmer, W. D., and Graber, R. R.; "An Approach for Assessing Missile System Dormant Reliability," Technical Report BDM/A-81-016-TR, BDM Corporation, 1981.
  13. Young-Soo Kim, Do-Kyoung Lee, Chang-Ho Lee, and Sun-Hee Woo, "Reliability Analysis of the MSC System," Journal of Astron, Space Sci., 20(3) : 217-226, 2003. https://doi.org/10.5140/JASS.2003.20.3.217