• Title/Summary/Keyword: Metro Railway

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Study for Application of High Speed R-bar System in Metro Express Railway Tunnel (광역급행철도 터널에 고속 R-bar 적용에 관한 연구)

  • Ahn, Young-Hoon;Song, Jin-Ho;Kim, Si-Gu
    • Proceedings of the KSR Conference
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    • 2011.05a
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    • pp.409-412
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    • 2011
  • Maximum speed of the train could not exceed over 160km/h with R-bar system in the underground type tunnel structure. By the research to overcome this speed limit, maximum speed has reached up to 200~250km/h recently by new R-bar system. It is under discussion to construct Metro Express Line between Gyonggido and Seoul which requires maximum speed 180km/h~230km/h. New R-bar is an optimal system to achieve the speed improvement in this line. This study shows application of the high speed R-bar system in the underground tunnel section.

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Improvement of Overspeed Protection for Automatic Train Stop System (열차자동정지시스템(ATS)의 과속방지장치 개발)

  • Jeong, Rag-Gyo;Kim, Baek-Hyun;Kang, Seok-Won;Seo, Moon-Seog
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.67 no.1
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    • pp.61-67
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    • 2018
  • Automatic Train Stop (ATS) is a device that automatically stops or decelerates a train when the train exceeds the permitted speed limits or violates the signal regulations. The railway signaling system has been evolved to an automatic train control system (ATC), and is being developed into Distance-to-Go and Communication Based on Train Control (CBTC). In spite of that, the ATS system is currently being operated in Seoul Metro (line 1 and 2) and most of railway lines in Korea as well as overseas. In this study, we presents the technical methodology to prevent human errors in order to secure the safety in operation of the ATS system.

A Study on BOM System Constructing for Rolling Stock Maintenance (전동차 유지보수를 위한 BOM 체계 구축에 관한)

  • Son, Young-Jin;Lee, Kang-Won
    • Journal of the Korean Society for Railway
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    • v.10 no.2 s.39
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    • pp.195-200
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    • 2007
  • The most important part of RIMS(Rolling Stock Information Maintenance System) project is to construct BOM(Bill of Material). BOM is a listing or description of raw materials, parts, and assemblies that define a product. To construct BOM for RIMS is not a easy task due to several reasons such as data base scale and flexibility, proper integration between physical BOM and functional BOM, interoperability with other systems, etc. In this study we show several principles that Seoul Metro takes to get over the difficulties mentioned above. Based on these principles we propose the methodology Seoul Metro employs to construct BOM efficiently. We also discuss the applicability of BOM in several fields.

Design of U-IT Intelligent System for Monitoring the Safety of Metro Railway (도시철도 안전 관리를 위한 U-IT 지능형 시스템 설계)

  • Whang, Sung-Il;Park, Jung-Ho;Song, Jai-Chul
    • Proceedings of the IEEK Conference
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    • 2008.06a
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    • pp.1151-1152
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    • 2008
  • Recently, ubiquitous sensor network forms the self-organization network, and transfers the information among sensor nodes that have computing technology ability. In this paper, we design and implement U-IT system for monitoring the safety of metro railway and underground shopping malls. For this, we implement sensor nodes to support IEEE 802.15.4 wireless communication standard using low power. Also we implement USN gateway node system to transmit the collected data from sensor nodes to database server over CDMA cellular network.

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A Study on the Successful Factors in the Application of RIMS Project for the Safe Operation of Rolling Stocks in the Public Transportation (공공교통 전동차 안전운행을 위한 RIMS 프로젝트 적용의 성공요인 연구)

  • Lee, Kang-Won;Bhang, Youn-Keun;Son, Young-Jin
    • Journal of the Korean Society for Railway
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    • v.9 no.5 s.36
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    • pp.555-560
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    • 2006
  • This study finds out and suggests success factors for the application of RIMS project through the case study of Seoul Metro and literature survey. The successful application of RIMS needs expert knowledge and concept of BOM, standardization of maintenance planning, check lists of heavy maintenance inspection, organization structure of rolling stock maintenance offices, material management system of warehousing and the process of parts repairing between offices, connection of material ordering system, problem solving of circular spare parts administration among inspection, maintenance, and material organizational units, systemic serial number management of parts with RFID, daily closing diary connected with work process chart, and sufficient period of RIMS's test run. RIMS contributes to real time management of rolling stock maintenance, transparency of management, reliability of train operation, customer satisfaction, and management innovation.

Analysis about the new wheel changes of the rolling stocks after using the loop in Seoul Metro 2.3 lines (서울 메트로 2.3호선 루프선 사용 전후의 전동차 차륜교환분석)

  • Kim, Dong-Min;Ahn, Jong-Kon
    • Proceedings of the KSR Conference
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    • 2007.11a
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    • pp.35-50
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    • 2007
  • A contact patch between the wheel and the rail supports the train body and a traction power comes from it when rolling stocks run on the railroad. Friction force between the wheel and rail makes the train move on the rail. Whenever the train runs on the rail, the wheels and rails wear down by frictions inevitably. So it must be shaped by the lathe or changed for the safety train operation and the comfortable ride. Until now, many measures were carried out in order to prevent a wear and tear of the wheels. For example loop line railway in Kun Ja depot and Ji Chuk depot. This document reports the wheel changing data taken by maintenances department for the period before and after 1996 in the 1.2.3.4 lines in Seoul metro.

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A Study on Crashworthy Characteristics of EMU Carbody for Overhead Line Structure Types (전차선 지지 구조물 형태에 따른 전동차 차체의 충돌안전도 특성 연구)

  • Kim, Jin-Seok;Lee, Hyun-Cheol;Cho, Hyun-Jik;Koo, Jeong-Seo
    • Journal of the Korean Society for Railway
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    • v.10 no.4
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    • pp.381-387
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    • 2007
  • In this paper, crashworthiness of the EMU carbody of Incheon Metro is numerically evaluated against two types of overhead line structures (headspan and portal-type). The material of the EMU carbody is stainless steel (SUS301L), and that of the overhead line structures is the structural steel (SS400). The EMU carbody is analyzed under collision conditions, such as upright side-on impact, side-on roof impact and angled roof impact scenarios, to be collided against the headspan type or the portal type at the speed of 64.4km/h, respectively. It is concluded from the numerical results that the overhead line structures will not do so much harm to the EMU carbody of Incheon Metro for various collisions caused by derailment. Furthermore, the overhead line structure of the portal type is superior to that of the headspan type in the crashworthy point of view.

A Study on History of Rolling Stock Door Engines of Seoul Metro Line No.3 and No.4 (3,4호선 도시철도 전동차 도어엔진의 개발 역사에 관한연구)

  • Jang, Sung-Chul;Lee, Chan-Hee;Jeon, Kwan-Soo;Son, Young-Jin
    • Proceedings of the KSR Conference
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    • 2010.06a
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    • pp.1352-1359
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    • 2010
  • It is said that the number of people using public transportation has risen about 220 thousand over 3 years which was 1019 people average a day in 2006 and 1041 people last year. It is also said that the number of people using subway has increased by 198 thousand and the number of people using bus by 22 thousand. Can you imagine how many door engines work at the same time if we count Metro line no.1 to no.4 which consist of total 120 subway stations? A train has 80 door engines and Metro line trains have 9600 door engines all together. Which explains it quite simple how much Satefy, Durability and Sustainability need to be focused in Door Engines. Although it's not the whole part of door engines in Seoul Metro Line, And Metro No.4's door engines are operated by the method called mixture of mechanical type and belt type. And the last one is being used in the brand-new Metro train line No.3 which is being operated by electricity motor, instead of the old methods which use air pressure to operate a door engine. I'm sure you will agree that Safety is the first priority of Metro train and next follow comfortability and quickness. I think all I've talked so far make it the first step for the Safety of Metro train for you to understand the unit of a Door Engine.

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A Study on the Unification of The Grounding System of SeoulMetro due to Ageing (서울메트로 접지시스템의 경년변화에 따른 개선 접지 기준)

  • Min Byung-Hoon;Kim Gyunl-Sig;Chung Young-Ki
    • Journal of the Korean Society for Railway
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    • v.9 no.4 s.35
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    • pp.394-400
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    • 2006
  • Since Seoulmetro built the first line of electric railway at seoul 1974, the passengers of railway have been increased rapidly, and electric railway requires more electric power for the greater capacity of transport. It is important that we prevent the accidents related with the subway, because all systems of subway are constructed in artificial underground structure. Since the previous versions of the earth system were built to meet the old standards of the electric facility for the lightning, some accidents related with the DC earth fault are causing secondary damages to the electric equipments. So, the old grounding system must be improved, and new standards of grounding system are required. We compare the grounding systems of the domestic railway corporations and the accidents that are related with the grounding systems. And we give ideas to improve the grounding systems and present standards which are suitable to electric railway.