• Title/Summary/Keyword: Stock maintenance

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A Study on Cepstrum Analysis for Wheel Flat Detection in Railway Vehicles (차륜의 찰상결함 진단을 위한 켑스트럼 분석 방법 연구)

  • Kim, Geoyoung;Kim, Hyuntae;Koo, Jeongseo
    • Journal of the Korean Society of Safety
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    • v.31 no.3
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    • pp.28-33
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    • 2016
  • Since defects in the wheels of railway vehicles, which occur due to wears with the rail, cause serious damage to the running device, the diagnostic monitoring system for condition-based maintenance is required to secure the driving safety. In this paper, we studied to apply a useful Cepstrum analysis to detect periodic structure in spectrum among the vibration signal processing techniques for the fault diagnosis of a rotating body such as wheel. In order to analyze in variations of train velocity, the Cepstrum analysis was performed after a domain change of the vibration signal from time domain to rotation angle domain. When domains change, it is important to use a interpolation for a uniform interval of the rotation angle. Finally, the Cepstrum analysis for wheel flat detection was verified by using the vibration signal including the disturbance resulting from the rail irregularities and the vibration of bogie components.

A Study on Disposal Method of Non-Point Pollutant of the Rolling Stock Depot (철도 차량기지내 비점오염물 처리방안 연구)

  • Jung, Jae-Hyoung;Shin, Min-Ho;Cho, Kook-Hwan
    • Proceedings of the KSR Conference
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    • 2011.10a
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    • pp.2910-2916
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    • 2011
  • Environmental conservation is becoming the major conversation topic in the 21st century, the era of environment. In the Law for the Preservation of Water Quality, article 53 states "A business unit which is doing business causing pollution caused by non-point pollutant or builds waste water discharge facilities, should report the installation of the non-point pollutant and install the required pollution control facilities". Environmental pollution caused by oil leaks during operation or maintenance has been found in the railway sector. Especially, rolling stock depot is most likely to be affected by environmental pollution. Therefore, in this paper We have investigated non-point pollutant in the rolling stock depot area and have studied adequate disposal method to minimize the effect of the non-point pollutant, hoping to supply the preliminary data for building an environment-friendly rolling stock depot.

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A Study on the Structural Analysis for the Aluminum Alloy Carbody of a Double-Deck EMU (2층열차 차체의 구조강도해석에 관한 연구)

  • Hwang Won-Ju;Kim Hyeong-Jin
    • Proceedings of the KSR Conference
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    • 2003.10c
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    • pp.91-97
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    • 2003
  • In many countries such as Japan, France and so on, the number of double-deck trains has been dramatically increased for the purpose of public traffic. Several researchers have performed feasiblilty studies related to the operations of double deck rolling stock vehicles in Korea since 2001. In recent years, rolling stock vehicles are required to have light weight to save energy consumption and maintenance costs. For these reasons, the standard EMU vehicle developed by KRRI and Kwan-Ju EMU(Electric Multi Unit) are made of aluminum extruded panels. The concept model of a double-deck rolling stock vehicle investigated in this study is also designed to use AEP(Aluminum Extruded Panel). In this paper, the methods related to the structural strength improvements of the car body are proposed through careful modifications of thicknesses and shapes of AEP.

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A Study of The Railway Electric Vehicle Maintenance System Normalization (철도 전기차량 유지보수 시스템 표준화에 관한 연구)

  • Youn, Ki-Hak;Lee, Su-Ryong;Wang, Jong-Bae;Lee, Hi-Sung
    • Proceedings of the KSR Conference
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    • 2011.10a
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    • pp.1366-1372
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    • 2011
  • Life cycle of the rolling stock is normally 20 to 40 years, though there is some difference in accordance with each vehicle. Maintenance cost is over the twice of purchasing price. and also it is true that precise statics is not managed properly except for some developed countries due to the difference of maintenance method, skills. After KORAIL introduced ERP system in 2007, maintenance cost is managed by type of cars, by unit. but, afterwards it should be controlled as an index and also more precisely. it is the best pending issues to make train maintenance efficiency, to utilize accumulated indexes. I want to attribute to train maintenance efficiency by analysing what is the problems in the present maintenance method.

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A Study on the Diagnosis system for the propulsion equipment in railway rolling stock (철도차량용 전기추진장치의 진단시스템 연구)

  • Park, Hyun-June;Kim, Gil-Dong;Byun, Yoon-Sub;Han, Young-Jae;Jang, Dong-Uk
    • Proceedings of the KIEE Conference
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    • 2001.07b
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    • pp.1245-1247
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    • 2001
  • This paper discusses that the maintenance of the propulsion equipment in railway rolling stock. Condition monitoring of railway equipment is the need for integration of remote condition monitoring with maintenance management strategies. The paper outlines research leading to the design and development of a prototype control and monitoring system for propulsion equipment.

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A Study on the Methodology of Virtual Engineering Technique for Rolling Stock. (철도차량에서의 Virtual Engineering 기술적용)

  • Jun Hyun Kyu;Ohk Min Hwan;Yang Doh Chul;Chung Heung Chai
    • Proceedings of the KSR Conference
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    • 2004.06a
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    • pp.847-852
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    • 2004
  • The virtual engineering technologies have been broadly used for the design, testing, manufacturing and maintenance works of industrial product. Recently many VR systems with walk through navigation and web databases; such as design and installation database. load history database, maintenance history database et al. are developed. However, the virtual engineering in railroad industry is not well developed compared to other industries like automobile, air, shipbuilding. In this paper, we explain the strategy that we have applied the virtual engineering technology to the design works of rolling stock and our plan to build the virtual testing laboratory(VTL) in the Korea Railroad Research Institute.

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A Study on the Daily Inspection of the Rolling-stocks (철도차량 일상검수 주기 및 방법에 관한 연구)

  • Yu, Yang-Ha;Lee, Nak-Young;Kim, Ho-Soon
    • Proceedings of the KSR Conference
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    • 2010.06a
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    • pp.1642-1649
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    • 2010
  • At present, KORAIL is in the middle of renovating. All steps exert great effort at cost reduction and a profit improvement. Especially to improve maintenance method and inspection period at the rolling-stock division lots of research is under progress. Daily inspection of rolling stocks is to operate the rolling stock normally. Daily inspection items are driving control device, coupling device, brake system, water system and air conditioning system, electrical system etc. Half of the maintenance manpower are inputted at daily inspection. Strengthens the quality and optimize the proportion of daily inspection are urgent problem. Daily inspection period extension aim is as follows. KTX from 3,500km to 5,000km, passenger car from 1st to 3,500km, new style electric locomotive from 2nd to 5,000km, the diesel locomotive is 2,800km from 1,200km. In this paper, the optimal daily inspection period and methods are considered including expected problem and counter measures.

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Extended Generic BOM for Urban Transit (확장된 Generic BOM을 이용한 도시철도차량 BOM)

  • Park Kee-Jun;Chung Jong-Duk;Ahn Tae-Ki
    • Journal of the Korean Society for Railway
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    • v.8 no.6 s.31
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    • pp.539-543
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    • 2005
  • This paper proposed the EGBOM, Extended Generic BOM, which is more flexible BOM system than GBOM. The GBOM system has the limitation to construct Result BOM and to select options by choosing only one Variant under given Cluster. In order to overcome this limitation, we propose the EGBOM which can make more various Result EGBOM, which can use to rolling stock through constructing urban transit BOM using the proposed EGBOM. The last, this paper describes the various Result BOM examples constructed from Source BOM of UT_EGBOM, such as rolling-stock maintenance BOM, individual car BOM, etc.

An Analysis of Rolling-Stock Information Maintenance System Real-Field Operational Results (전동차 유지보수 정보화체계 관리시스템 실증적 운영결과 분석)

  • Son, Young-Jin;Lee, Kang-Won
    • Journal of the Korean Society for Railway
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    • v.10 no.3 s.40
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    • pp.284-289
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    • 2007
  • We analyze the real-field operational results of the RIMS. Four aspects are considered; 1) economical, 2) managerial, 3) safety and reliability and 4) RIMS user evaluation. In economical aspect we investigate the fields where some economical gains are anticipated. In managerial aspect the efficiency and effectiveness of management through RIMS are investigated. The improvement of safety and reliability are qualitatively discussed. And RIMS user evaluation is performed through survey. We also suggest several conditions for the successful settlement of RIMS and future study area for RIMS to be more reliable and perfect.

Reliability Improvement Method of the Electrical Door System for the Railway Vehicles (철도차량의 전기식 출입문 시스템의 신뢰도 개선 방안)

  • Yang, Yong Joon;Lee, Hi Sung
    • Journal of Energy Engineering
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    • v.24 no.1
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    • pp.17-23
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    • 2015
  • Electrical door system is one of the most essential items for the successful commercial operation of the railway vehicles. Nowadays, reliability values of electrical door system have a tendency to be included in technical requirements for design and manufacturing of rolling stocks. Manufacturer shall meet the reliability target values of electrical door system which is proposed by railway operator in procurement contract book. Railway operator shall approve the supplier's the reliability target values based on maintenance operation data. Railway operators are in the transition stage from the framework of maintenance interval based on time to the framework of maintenance interval based on distance. In this study, failure rates of the electrical door system currently used in railway vehicles are collected from maintenance field data. Failure rates are analyzed by using Minitab. Several kinds of plan for improving reliability are also suggested. It is necessary to keep studying on reliability prediction methodology, applying it in the field and implementing on improvement of reliability through feedback as well. Further, it will be useful for determining new maintenance policies or changing maintenance intervals for existing railway vehicles.