• Title/Summary/Keyword: Train formation

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The influence of the Train formation on the KTX Vibration at the Tail of the Train (KTX 차량의 편성특성이 후미진동에 미치는 영향)

  • Kang Bu-Byoung;Chung Heung-Chai;Kim Jae-Chul;Ryu Young Joon
    • Proceedings of the KSR Conference
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    • 2003.10c
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    • pp.126-131
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    • 2003
  • The acceptance test of KTX has been performed in Korea. During the test, lateral vibration of carbody over the accepted value called sway was found. KTX has 20 car trainset formation whose trailer cars are linked by articulate bogies. So this study is performed to see the effects of long trainset formation on vehicle dynamics and the train stability by 20 car vehicle model. Firstly the reliable vehicle model which shows well the tendencies appeared in the tests on the high speed test line is required to find the cause of lateral vibration and the countermeasure. Vehicle model was made .for the. analysis with VAMPIRE. The analysis results show that secondary air spring lateral stiffness is the most significant parameter to cause carbody lateral vibration. Mode analysis results show that the least damped mode shape is similar to the vibration pattern shown in the tests that the amplitude of the motion increases along the train set and decreases in the tail part. For the case of short train formation with 7 or 10cars, sway does not happen. But in the case of longer train formation with 16 or 20 cars, sway was found.

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The Study for Design of Formation and System of Double Deck Train (2층 열차의 편성 및 기기배치 설계에 관한 연구)

  • Park Kwang-Bok;Kim Hyeong-Jin;Baik Kwang-Sun
    • Proceedings of the KSR Conference
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    • 2004.06a
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    • pp.811-818
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    • 2004
  • This report was studied about the design of formation and layout of major components of double deck train operated at main line of the domestic. And we carried out the basic design of train formation, the layout of propulsion system and brake system and studied about the performance of train traction and brake system of double deck train.

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The influence of the Train formation on the KTX Vibration at the Tail of the Train (KTX 차량의 편성차량수가 후미 불안정 진동에 미치는 영향)

  • Kang, Bu-Byoung;Chung, Heung-Chai
    • Proceedings of the KSME Conference
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    • 2003.11a
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    • pp.1708-1713
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    • 2003
  • The acceptance test of KTX has been performed in Korea. During the test, lateral vibration of carbody over the accepted value called swat was found. KTX has 20 car trainsed formation whose trailer cars are linked by articulate bogies. So this study is performed to see the effects of long trainsed formation on vehicle dynamics and the train stability by 20 car vehicle model. Firstly the reliable vehicle model which shows well the tendencies appeared in the tests on the high speed test line is required to find the cause of lateral vibration and the countermeasure. Vehicle model was made for the analysis with VAMPIRE. The analysis results show that secondary air spring lateral stiffness is the most significant parameter to cause carbody lateral vibration. Mode analysis results show that he least damped mode shape is similar to the vibration pattern shown in the tests that the amplitude of the motion increases along the train set and decreases in the tail part. For the case of short train formation with 7 or 10cars, sway does not happen. But in the case of longer train formation with 16 or 20 cars, sway was found.

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The Network Implementation on Data Communication of TCMS in case of multiple configuration of EMU(Electric Multiple Unit) (전동차의 중련연결시 TCMS장치의 데이터 통신에 관한 네트워크 구현)

  • Seo Sang-Jun;Han Jeong-Soo;Choi Jong-Muk
    • Proceedings of the KSR Conference
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    • 2005.05a
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    • pp.744-749
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    • 2005
  • The train configuration is based on one unit like basic 4 cars to multiple unit operation. Each unit has unique node such as train formation number. Some equipments(TC, CC) of TCMS are connected to the master TC through the LonWorks network. When the train is consist of multiple unit, TCMS has to implement quick network for data communication overall train. But a variable time delay is generated when it is performed communication with point to point type using train formation number. In this paper we propose new method to know the node information of adjacent unit. that is to add digital input signals notifying cab direction at any cabin. Also, we provide the optimized screen design that all collected information via network is displayed by each unit.

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Technical review of train set formation of Highspeed Tilting EMU(TTX) (고속틸팅전기차량(TTX)의 시스템 편성을 위한 기술검토(TTX))

  • Han, Seong-Ho;Lee, Su-Gil;Ko, Tae-Hwan
    • Proceedings of the KIEE Conference
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    • 2004.04a
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    • pp.287-289
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    • 2004
  • Tilting train has been developed to increase the operational speed of the trains on conventional lines which have many curves. This train are tilted at curves to compensate for unbalanced carbody centrifugal acceleration to a greater extent than compensation produced by the track cant, so that passengers do not feel centrifugal acceleration and thus trains can run at higher speed at curves. This paper investigated train formation of TTX(tilting train express) with maximum operation speed 180 km/h.

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Analysis of Wheel Flange Wear Characteristics for KTX (고속철도 차량용 차륜플랜지 마모특성 분석)

  • 이찬우;강부병
    • Proceedings of the KSR Conference
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    • 2002.10b
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    • pp.787-792
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    • 2002
  • This study presents the wheel wear measurement results of Saemaeul train running on the conventional line. The train set included three different cars which have different shape of wheel profile including KNR and KTX profile currently used in Saemaeul. Train set was operated on Seoul-Pusan line with fixed train set formation for commercial service. Wheel wear measurements were peformed periodically. Here, we describe some results.

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Configuration design of the trainset of a high-speed train using neural networks

  • Lee, Jangyong;Soonhung Han
    • Proceedings of the Korea Inteligent Information System Society Conference
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    • 2001.01a
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    • pp.116-121
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    • 2001
  • Prediction of the top(service) speeds of high-speed trains and configuration design to trainset of them has been studied using the neural network system The traction system. The traction system of high-speed trains is composed of transformers, motor blocks, and traction motors of which locations and number in the trainset formation should be determine in the early stage of train conceptural design. Components of the traction system are the heaviest parts in a train so that it gives strong influence to the top speeds of high-speed trains. Prediction of the top speeds has been performed mainly with data associated with the traction system based on the frequently used neural network system-backpropagation. The neural network has been trained with the data of the high-speed trains such as TGV, ICE, and Shinkanse. Configuration design of the trainset determines the number of trains motor cars, traction motors, weights and power of trains. Configuration results from the neural network are more accurate if neural networks is trained with data of the same type of trains will be designed.

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The development of WTB(Wire Train Bus) Analyzer for the TCN(Train Communication Network) testing (TCN(Train Communication Network) 통신 시험용 WTB(Wire Train Bus) Analyzer 개발)

  • Jeon, Seong-Joon;Paik, Jin-Sung;Shon, Kang-Ho
    • Proceedings of the KSR Conference
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    • 2008.06a
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    • pp.1936-1945
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    • 2008
  • In Korea, TCN has applied to the Korean High-speed Train (HSR350X) through G7 High-speed Train development project. TCN is the most suitable international standard communication network for distributed control systems that is adopted for high-speed of vehicle, safety and flexibility. TCN is the network exclusively for the high-speed train and electrical trains. This TCN satisfies the network standards. The network standards are real time communication, fault tolerance design, integrated data system, resistance of environment, automated recognition for modification of vehicle formation and maintenance. The purpose of this research is applying the development of WTB analyzer which is part of communication network system TCN, to check the communication of high-speed trains and electrical trains.

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A Study on the Operation of Express Train on the Seoul Metropolitan Subway Network - Focused on Kyungwon & Jungang Lines - (수도권 광역철도 급행열차 운행방안 연구 - 경원선.중앙선을 중심으로 -)

  • Lee, Weon-Soon;Kook, Kwaung-Ho
    • Proceedings of the KSR Conference
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    • 2008.11b
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    • pp.645-656
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    • 2008
  • The operation of express train on the Seoul Metropolitan Subway Network is centered on the Kyungbu and Kyungin lines and the short section between Dongducheon station and Ganyung station which is 20.7km long. It is true that the needs of many customers who want to reduce their commuting hours by express train is not satisfied. This paper proposes that the operation of express trains be enlarged to Sungbuk station on Kyungwon line which comes to 34.9 km long, and to Yangsu station from Youngsan station on Jungang line. The type of operation is mixed one with high and low speed trains, which operates express train by use of existing siding tracks without improving facilities such as extra building of sidings. This pragmatic study is to apply the goal of reducing running time as express train and to suggest the selection of appropriate stops, effectivenes analysis of express train operation and formation of train diagrams to actual operation.

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An Optimizing Simulation for Designing the Numbers of Electric Train Car (전동열차 편성량수 설계를 위한 최적화 시뮬레이션)

  • Kim, Ick-Hee;Yun, Dong-Hee;Kum, Ki-Jung;Lee, Sang-Myoung
    • Journal of Korean Society of Transportation
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    • v.30 no.3
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    • pp.95-106
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    • 2012
  • The railway service in the Seoul metropolitan area is facing variety of l changes such as extension of service coverage, new construction, and introduction of express service which in turn causes changes on demands. The demand affects train operation characteristics (frequency of service, train formation) as well as on the congestion rate which is one of the major evaluation index in metropolitan area user service. For the efficient operation of the train, the relationship among the minimization of fleet number, operating cost, and service level has been analyzed. Using the Powersim, which is a system dynamics (System Dynamics) simulation program for realizing optimized simulation for train-formation, this paper identified that some stations of Gyeong-bu line exceeded limit congestion rate(150%) of a fleet already that means it is best to maintain current condition of the line; however, the Gyeong-in line and the Gwa-chon line showed no excess of the limit congestion rate so that it is possible to reduce 2-4 fleets of train for efficient operation. In addition, in case of Jang-hang line between Cheon-an and Sin-chang, a train consisting of 10 fleets provides services which is same formation of train for Gyeong-bu line. This study proved that the congestion rate will not rise greatly with only 4 fleets of a train for the service in Jang-hang line, and it is considered that a study for shuttle service between Cheon-an and Sin-chang is necessary.