• 제목/요약/키워드: train

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승강장 혼잡관리를 위한 열차의 정차시간 예측모형 (Development of the Train Dwell Time Model : Metering Strategy to Control Passenger Flows in the Congested Platform)

  • 김현;이선하;임국현
    • 한국ITS학회 논문지
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    • 제16권3호
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    • pp.15-27
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    • 2017
  • 열차 정차시간 증가는 열차 서비스 빈도를 감소시켜 열차와 승강장의 혼잡이 발생하게 된다. 그러므로 열차 정차시간(Train dwell time)에 관한 연구는 열차 운행 계획수립 관점에서 매우 중요하게 다루어 왔다. 본 논문은 계획된 정차시간을 준수할 수 있도록 승객의 유입을 관리하여 승강장 혼잡을 줄일 수 있는 전략들에 활용할 수 있는 실시간 열차 정차시간 예측모형을 개발하였다. 모형의 특징은 실시간으로 수집 가능한 승차인원, 하차인원, 그리고 열차의 중량 등 3가지 독립변수를 적용하였고, 모형의 설명력(${\bar{R^2}}=0.809$)이 대체적으로 정확한 결과를 보여주었다. 실시간 정차시간 모형은 열차가 계획된 정차시간을 준수하도록 승차 승객 수를 조정하는 게이트 미터링 전략에 활용될 수 있다.

RF-CBTC 신호방식에서 Fall-Back 시스템 구축방안 (A study of performing Fall-Back operation in RF-CBTC signalling system)

  • 전재훈;강덕원;이종성
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2011년도 춘계학술대회 논문집
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    • pp.145-153
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    • 2011
  • In the system necessary for safety such as the train control system, to make train control information be sent correctly is very important to enable organic movement between trains. In the case of the system such as RF-CBTC (Radio Frequency Communication Based Train Control) the control related information is sent through wireless transmission between on-board system of a train and wayside transmitter. The wayside transmitter collects the running information such as location, velocity from the on-board system and operates the optimizing control by sending the control information such as the target, limited velocity to the on-board system. But, when the communication disconnect or train failure, the critical hazard such as train collision or derailment may be possible because the RF-CBTC depends on the information through wireless communication. This paper discribes of performing Fall-Back system to detect train position in the case of rail break or communication failure to avoid train accident and allows train to be operated safely. It can be implemented with ATP function through track circuits using active-type transformers and axle counters, and allows train to be operated manually in emergency status.

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고속전철 차량시스템의 주행성능 예측 소프트웨어의 개발 (Development of High Speed Train Performance Simulation Software)

  • 정경렬;김상헌;박수홍;이장용
    • 대한기계학회논문집A
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    • 제24권1호
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    • pp.134-143
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    • 2000
  • A train performance simulation (TPS) software is a computer program that simulates the operation of a train system over a specified railway route and it is widely used in railroad operation and research applications. Numerical and graphical results from the simulation software, which is developed in this study, provide information on such performance variables as travel time. running speed, energy consumption at a specific time interval and in overall service time as the train moves along the route. Three types of input data are required for a computer simulation: track information, train information, and running conditions. The simulation of train performance starts with several simple mathematical models including train configuration. traction efforts, running resistance. and braking requirements. Based on the basic specifications of Korean High Speed Railway, System. this study, puts a focus on the estimation and assessment of train performance comparing. the specific train configurations of KEST20/11. CPLE20/10. PROP20/10, which are proposed from the previous G7 projects.

일반 판토그라프의 틸팅차량 적용을 위한 차량시스템의 개선안 (Application of Normal Pantograph to Tilting Vehicle with Technical Modification of Vehicle System)

  • 문형석;엄기영;여인호;유원희;김남포
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2004년도 추계학술대회
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    • pp.887-892
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    • 2004
  • On curved rail, the speed of train must be reduced in order to keep riding comfort. So, the train has the speed limitation in conventional railway line. But if the train has the tilting mechanism, the speed of train is able to be increased while maintaining the riding comfort. Generally, the tilting train is faster than the non-tilting train about 30% in curve. The tilting train technology and reduction of travel time has been carefully investigated by KRRI (Korea Railroad Research Institute). Based on the primary research result from KRRI, tilting control system and tilting operation interlace are considered its core technology to apply tilting train to Korean conventional railway. In this paper application of non-tilting pantograph to tilting system will be introduced. New type of bogie frame and system modification of vehicle are invented to apply non-tilting pantograph to tilting train.

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Smart열차진로제어를 위한 선로데이터 생성관리프로그램의 데이터 구조 (Data Structure of a Program Generation and Managing Track Data for Smart Train Route Control)

  • 윤용기;황종규;조현정;이재호
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2007년도 춘계학술대회 논문집 전기기기 및 에너지변환시스템부문
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    • pp.234-236
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    • 2007
  • Even though the existing train route controlling method, using track circuits, ensures the sufficient number of operation, it still has problems such as discordance between train numbers which was planned for operating and train numbers being operated on the track, and allowing only one train entering for one route. To solve those problems, we study and develop the Smart train route controlling system which uses the real-time informations of train positions. This system enables improve the coefficient of utilization in a certain train route controlling section, and the safety level of train route controlling, but we should ensure satisfying reliability of data about tracks operated by trains. In addition, there is a need to protect accidents caused by erroneous information of train position, by reflecting changes of tracks, for example maintenance, improvement, expansion of tracks. In this paper, we describes data structure of a developed program which required to change CAD files to wiring diagrams and to generate them to data of tracks. And we show the result that the simulator, using the data structure, controls speed and route of trains without problems.

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Seismic response of a monorail bridge incorporating train-bridge interaction

  • Kim, Chul-Woo;Kawatani, Mitsuo;Lee, Chang-Hun;Nishimura, Nobuo
    • Structural Engineering and Mechanics
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    • 제26권2호
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    • pp.111-126
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    • 2007
  • Dynamic responses of the bridge for a straddle-type monorail subjected to the ground motion of high probability to occur are investigated by means of a three-dimensional traffic-induced vibration analysis to clarify the effect of a train's dynamic system on seismic responses of a monorail bridge. A 15DOFs model is assumed for a car in the monorail train. The validity of developed equations of motion for a monorail train-bridge interaction system is verified by comparison with the field-test data. The inertia effect due to a ground motion is combined with the monorail train-bridge interaction system to investigate the seismic response of the monorail bridge under a moving train. An interesting result is that the dynamic system of the train on monorail bridges can act as a damper during earthquakes. The observation of numerical results also points out that the damper effect due to the dynamic system of the monorail train tends to decrease with increasing speed of the train.

공항철도 전동차의 승차감 측정 (A Ride Quality Measurement of Rolling Stock used in Airport Railway)

  • 전창성;류준형;백광선;윤성철;김명룡;김원경
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2007년도 춘계학술대회 논문집
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    • pp.1546-1549
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    • 2007
  • A ride quality measurement was carried out for commuter and express train used in airport railway. Lateral and vertical directional average ride quality level is higher than that of longitudinal direction. Because express train is faster than commuter train, the average ride quality level of express train is higher compared to that of commuter train. The average ride quality level of commuter train is between 'good comfortable($100{\sim}105dB$)' and 'very good comfortable(below 100dB)'. The average ride quality level of express train is between 'not comfortable($105{\sim}110dB$)' and 'good comfortable($100{\sim}105dB$)'. In spite of the scheduled speed is higher(more than 70km/h for commuter train, more than 80km/h for express train) than other lines, the ride quality of airport railway train is good. The reason is that there is little gradient in rail and the radius of curvature is larger compared to that of other lines.

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열차행선안내게시시스템 개선방안 연구 (A Study on Improvement of Means of Realization of Train Destination Equipment System)

  • 윤인영;여용주;김광휘;김호창
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2007년도 추계학술대회 논문집
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    • pp.1566-1573
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    • 2007
  • Urban railway system that leads the urban public transportation enables the passengers to use the subway system safely and conveniently by indicating the destination of, status of approach of and other information on train through Train Destination Equipment(TDE), which is one of the important passenger services. The existing system is composed of Host Station Equipment(HSE) and operator panel that receives necessary input on train information from Total Traffic Control System(TTC), Local Station Equipment(LSE) that controls Train Destination Indicator(TDI) installed at each station, and Train Destination Indicator that ultimately displays train information to the passengers using the train system. This study aims to realize stabilized and reliable announcement system for destination of train by considering processing procedure and method of expression of inputted information of the existing system of notification of announcement of destination of train that can be applied in the RFID, which is the base technology of USN for which service expansion is easy, and to realize system that considers interface with USN and expandability with other facilities in the future.

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터널내를 주행하는 열차의 공기역학적 해석(I)-1열차의 공기 역학- (Aerodynamic Analysis of a Train Running in a Tunnel(I)-Aerodynamics of One-Train-)

  • 김희동
    • 대한기계학회논문집B
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    • 제21권8호
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    • pp.963-972
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    • 1997
  • As a high-speed train enters a tunnel, a compression wave is generated ahead of it due to the piston action of train. The compression waves propagate along the tunnel and reflect at the exit of tunnel. A complex wave phenomenon appears in the tunnel, because of the successive reflections of the pressure waves at the exit and entrance of tunnel. The pressure waves give rise to large pressure transients which impose the fluctuating loads on the running train. It is highly needed that the pressure transients should be predicted to design the train body and to improve the comfortableness of the passengers in the train. In the present study, the pressure transients were calculated numerically for a wide range of train speed and compared with the previous tunnel tests. The calculation results agreed with ones of the tunnel tests, and the mechanism of pressure transients was made clear.

터널내를 주행하는 열차의 공기역학적 해석(II)-2열차의 공기역학- (Aerodynamic Analysis of a Train Running in a Tunnel(II)-Aerodynamics of Two-Trains-)

  • 김희동
    • 대한기계학회논문집B
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    • 제21권8호
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    • pp.983-995
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    • 1997
  • As a high-speed train enters a tunnel, a compression wave is generated ahead of it due to the piston action of train. The compression waves propagate along the tunnel and reflect backward at the exit of tunnel. A complex wave phenomenon appears in the tunnel, because of the successive reflections of the pressure waves at the exit and entrance of tunnel. The pressure waves can give rise to large pressure transients which impose the fluctuating loads on the running train. It is highly needed that the pressure transients should be predicted to design the train body and to improve the comfort for the passengers in the train. In the present study, the pressure transients and aerodynamic drag for two-trains running in a tunnel were calculated numerically for a wide range of train speed, and compared with the results of the previous tunnel tests and calculations for one train. The present calculation results agreed with ones of the tunnel tests, and the mechanism of pressure transients was made clear.