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A Study for Reliability Improvement of Passenger Service Equipment using Failure Analysis

고장 분석을 통한 승객서비스 장치의 신뢰성 향상방안 연구

  • Roh, Bumtaek (Banghwa Rolling Stocks Management Office, Seoul Metropolitan Rapid Transit Corporation) ;
  • Chung, Kwangwoo (Department of Railroad Operation System Engineering, Korea National University of Transportation)
  • Received : 2016.10.04
  • Accepted : 2016.10.17
  • Published : 2016.10.31

Abstract

The Passenger Service Equipment(PSE) provide various train operation data such as flag station data. When PSE incur service failures or errors, passengers who use the train feel great inconvenience. In this paper, I have chosen PSE that were important to passengers and have applied Reliability Centered Maintenance(RCM), deviating from the existing perspective that operators have taken to perform RCM. FMEA/FMECA was performed for reliability analysis of the PSE. The highly critical device among the PSE is defined as the Passenger Information Control System(PICS), which is used to control the automatic announcement and signaling board. Through Weibull distribution of the PICS, failure analysis was performed. Based on the analyzed results, I have proposed a solution that will minimize service failure of PICS.

승객서비스 장치는 역정보 등 다양한 열차운행 정보를 제공하기 위해 설치된 승객 접점장치로 고장이나 오류 시 열차운행에 영향은 적지만 승객들은 큰 불편을 느끼게 된다. 이에 본 논문에서는 신뢰성기반 유지보수(RCM)를 운영자 입장에서 적용했던 기존 시각에서 벗어나, 승객 입장에서 중요장치인 승객서비스 장치를 분석대상으로 선정하였다. 서울도시철도공사의 데이터를 기초로 승객서비스 장치에 대한 고장분석 및 FMEA/FMECA수행, 심각-발생도 매트릭스 및 위험우선순위평가 결과를 기반으로 통합 설정기를 분석대상으로 선정하였으며, 와이블분포를 통해 고장패턴, 고장률 등 고장해석을 수행하였다. 이를 바탕으로 승객서비스 장치의 고장 최소화 방안을 제시하였다.

Keywords

References

  1. B.N. Park, H.J. Joo, C.H. Lee, S.S. Lim (2009) A study on FMEA for railway vehicle, Spring Conference of the Korean Society for Railway, Gyeongju-Si, pp.162-168.
  2. J.H. Park (2012) Improvement of VVVF Inverter of the Line 7 EMU by Applying FMECA process, Seoul National University of Science and Technology. Master's Degree Thesis, Seoul National University of Science & Technology.
  3. MIL-STD 1629A (1980) Procedures for Performing a Failure Mode and Effects and Criticality Analysis, Department of Defense. Washington, DC. pp.4-11
  4. C. An, D. Lee, Y. Son, C.H. Lee, S.S. Lim (2010) A study for reliability improvement of belt type door system using FMECA, Journal of the Korean Society for Railway, 13(1), pp. 58-64.
  5. S.K. Seo (2009) MINITAB Reliability Analysis, Eretec, Gunpo-Si, pp. 42.
  6. S.K. Seo, H.K. Kim, H.M. Kwon, M.S. Cha, W.Y. Yun, J.H. Cha (2013) Reliability Engineering, Kyobo, Paju, pp. 31-45.
  7. Y.H. Yu, N.Y. Leea (2013) A Study on Reliability Centered Rolling Stock Maintenance Methods, Journal of the Korean Society for Railway, 16(3), pp. 183-188. https://doi.org/10.7782/JKSR.2013.16.3.183
  8. IEC 60300-3-11 (2009) Reliability Centered Maintenance, International Electrotechnical Commission, pp. 7-36.
  9. Seoul Metropolitan Rapid Transit (2015) Rolling stocks maintenance guideline, SMRT, Seoul.
  10. International Electrotechnical Commission (2006) Analysis technique for system reliability : Procedures for failure mode and effect analysis(FMEA), IEC 60812.
  11. J.S. Jang (1999) A study on performing FMEA effectively, Journal of the Korean Institute of Plant Engineering, 4(4), pp. 69-77.
  12. Society of Automotive Engineers(2009) Potential Failure Mode and Effects Analysis in Design (Design FMEA) and Potential Failure Mode and Effects Analysis in Manufacturing and Assemble Processes (Process FMEA) and Effects Analysis for Machinery(Machinery FMEA), SAE-J1739.