• Title/Summary/Keyword: Train Communication

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Test operation and development of Automatic/Driverless operation system for the standardized type EMU (표준전동차 자동/무인운전기술 개발 및 시운전에 관한 연구)

  • 한성호;안태기;이수길;이관섭;김원경;최규형
    • Proceedings of the KSR Conference
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    • 2000.05a
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    • pp.172-179
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    • 2000
  • The automatic/driverless operation which are great important techniques in metro railway are required to increase higher safety, greater reliability, and transport capacity. To satisfy such demands, we must have the system design iかd testing technique for the railway system operation. These techniques are related to the onboard train control and communication systems which include TCMS(Train Control md Monitoring System), ATO(Automatic train Operation), ATC(Automatic train Control), and TWC(Train to wayside communication). These sub-systems must be interfacing with not only each others but also the signal system on the ground. We tested the train control system on Test line that has been developed on the basis of the standardized type EMU for korea railway systems. This test line which is located in Sangju, have been constructed for testing 7 & 8 line of Seoul Metro railway.

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Design of Optimal control for Automatic Train Operation system in EMU

  • Han, Seong-Ho;Lee, Su-Gil;Kim, Soo-Gon;Lee, Woo-Dong
    • 제어로봇시스템학회:학술대회논문집
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    • 2001.10a
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    • pp.47.4-47
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    • 2001
  • The automatic-driverless operation, a very important technique for metro railways, is necessary for achieving higher safety, greater reliability, and bigger transport capacity. To achieve these things, we have to build up the system design and tasting techniques for the railway system operation. These techniques are related to the onboard train control and communication systems which include TCMS(Train Control and Monitoring System), ATO(automatic train Operation), ATC(Automatic train Control), and TWC(Train to wayside communication). These sub-systems should interface not only with each other but also between the sub-systems and the signal system on the ground. For the saving of energy, we designed coasting strategy of ATO system, In this paper, we developed ATO system and tested on the test line and ...

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Integrated Railway Signaling Systems for Laboratory Testing of Next-generation High-speed Train (한국형 고속전철용 신호시스템의 실험실 시험을 위한 통합 신호시스템)

  • Hwang, Jong-Gyu;Lee, Jong-Woo;Park, Yong-Jin
    • The Transactions of the Korean Institute of Electrical Engineers P
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    • v.53 no.1
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    • pp.32-39
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    • 2004
  • Railway signaling systems consist of several vital computerized equipment such as CTC(Centralized Traffic Control), EIS(Electronic Interlocking System), ATC(Automatic Train Control) and so on. Currently, the project for development of railway signaling systems for the next-generation high-speed train is progressed according to the G7 project and railway signaling related several companies and research institute are joined this project consortium. The railway signaling systems, being developed in this project, called as a kTCS(Korean Train Control System), is composed of kTCS-CTC, kTCS-IXL, kTCS-ATC and etc. kTCS signaling systems have to be operated at the laboratory testing level as integrated signaling systems by interface between each railway signaling systems before railway field installation and revenue service. To solve this matter, communication protocols between each signaling equipment are designed and message codes for each defined protocols have defined. And also several equipment has developed for the railway integrated signaling systems for laboratory testing. We has plentifully tested and verified the designed protocols and the characteristics of integrated railway signaling systems with our developed each kTCS signaling equipment and communication protocols. In this paper, the integrated kTCS system including communication protocols is presented.

Development of Communication Joint Tools for Implementing a Legacy-line Communication System in a Train (열차 내 무배선통신시스템 구축을 위한 통신연결장치 개발)

  • Kim, Hyun Sik;Park, Soo Hoon;Kang, Seog Geun
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.19 no.4
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    • pp.877-887
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    • 2015
  • In this paper, a design of communication joint tools to implement a legacy-line communication (LLC) system, which exploits various conductive lines in a train, is presented. We develop two kinds of joint tools; one is a conductive joint tool (CJT) that is connected directly to the conventional lines and the other is the inductive joint tool (IJT) which connects the conventional lines indirectly using electromagnetic induction. As a result, the practical experiment of data communication confirms that an LLC system with the developed joint tools has a transmission rate more than 20 Mbps in the distance of 200 m away. In addition, an environmental durability test shows that the joint tools operate stably in an extreme environmenal variation. It is, therefore, considered that the developed joint tools are very useful to implement a communication network in the train working currently.

Field Test of High-Speed Transponder System for Rail Transport (철도교통용 고속 트랜스폰더시스템 실차 시험)

  • Park, Sungsoo;Kim, Seong Jin;Lee, Jae-Ho
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.65 no.1
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    • pp.208-213
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    • 2016
  • In order to detect the exact position of high-speed train, it is necessary to obtain location information from the transponder tag installed along the track. When the transponder tag receives the energizing signal from the train, it sends a telegram to the reader, which includes location information. In high-speed railway environment, this telegram can be corrupted by electromagnetic interference caused by onboard electric train power equipments or wayside devices. In order to assess the performance of transponder system under this harsh environment, we carried out field test using HEMU-430X. Field test results are briefly introduced and discussed for the evaluation of the transponder system under development.

The Train Detection Method Using Enhanced Position Location Reporting System (EPLRS 기술을 이용한 열차위치검지 방법)

  • Choi, Dong-Hyuk;Quan, Zhong-Hua;Choi, Hye-Rim;Park, Gie-Soo;Ryou, Myung-Seon;Choi, Chang-Ho
    • Proceedings of the KSR Conference
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    • 2007.11a
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    • pp.1401-1406
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    • 2007
  • There is growing interest in CBTC(Communication Based Train Control) system in accordance with the development of the communication technologies. The CBTC system, which adopts the moving block, has advantages such as headway and installation cost reduction compared with the existing system with fixed block. For the moving block system, it is required to locate the trains in real-time. Based on EPLRS(Enhanced Position Location Reporting System) technology, the train position can be provided only through the communication between radios. This paper introduces EPLRS based train detection method and verifies its effect by instance.

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A Study about coordinate schemes of radio and TRS(Trunked Radio System) in subway (지하철 무선통신설비와 주파수 공용 전화방식의 연계방안에 관한 연구)

  • Ea Yong;Kim Meung-Su;Lee Beung-Song
    • Proceedings of the KSR Conference
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    • 2003.10c
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    • pp.210-215
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    • 2003
  • At present, communication network for subway is making use of the train radio system for main network and normally established a base station every three subway station. It is talk over the telephone between a locomotive and the traffic control for careful train service. Besides, mobile telephone equipment is using for service improve and convenience to passengers such as 011, 016, 017, 019 and what not. However, the train radio system has been occurring a various problems when a state of emergency because it is able to compose only one communication route each base station zone. We could have improving like this problems through induce the TRS(Trunked Radio System), though because have been able to compose multilateral communication route in case of linking with LCX(Leaked Coaxial) cable which is established. Therefore, we could be able to a fitting meet the emergency as train firing etc.. and efficient use of limited frequency resources.

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A Distributed Wireless Local Area Network (WLAN) Access Scheme for Efficient WLAN Communication in Busy Train Stations (혼잡 철도 역사에서 효율적인 무선랜 통신을 위한 무선랜 분산 접속 방법)

  • Koh, Seoung-Chon;Choi, Kyu-Hyoung;Kim, Ronny Yongho
    • Journal of the Korean Society for Railway
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    • v.17 no.6
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    • pp.402-409
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    • 2014
  • Wireless local area network (WLAN) is a widely used wireless access method due to its easy usability and excellent performance. However, its performance degrades significantly as the number of users increases. In busy train stations, where the number of WLAN users are large and, more importantly the number of simultaneous packet transmission attempts is extremely large due to the time synchronization upon train arrival, the packet transmission delay problem is very severe and almost impossible for WLAN stations to initiate communication with WLAN networks. In this paper, a novel distributed WLAN access scheme for efficient WLAN communication in busy train stations is proposed. Using the proposed scheme, WLAN access delay can be significantly reduced under highly congested traffic environments. Therefore, a significant performance enhancement for the WLAN performance used in the Communication Based Train Control (CBTC) can be achieved.

A Study on Design of Safety Transmission Unit for Next-Generation Train Control System (차세대 열차제어시스템 안전전송장치 설계에 관한 연구)

  • Tae-Woon Jung;Ho-Cheol Choo;Chae-Joo Moon
    • The Journal of the Korea institute of electronic communication sciences
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    • v.18 no.4
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    • pp.563-570
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    • 2023
  • The Safety Transmission Unit(STU) is a critical device used in railway systems to ensure safe and efficient operations by providing communication between trains and railway infrastructure. It is responsible for transmitting vital information and commands, allowing for the control and coordination of train movements. The STU plays a crucial role in maintaining the safety of passengers, crew, and the overall railway network. This paper presents the design and testing of a STU for the next-generation wireless-based train control system. An analysis of european and domestic standards was conducted to review requirements and ensure the design of a STU for the train control system meets international standards. Based on this analysis, hardware and software designs were developed to create an internationally recognized level of safety for the communication device. To verify the functionality of the STU, a simulator was developed, and it was confirmed that the designed features were successfully implemented.

The Influence of Noise Environment upon Voice and Data Transmission in the RF-CBTC System

  • Kim, Min-Seok;Lee, Sang-Hyeok;Lee, Jong-Woo
    • International Journal of Railway
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    • v.3 no.2
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    • pp.39-45
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    • 2010
  • The RF-CBTC (Radio Frequency-Communication Based Train Control) System is a communication system in railroad systems. The communication method of RF-CBTC system is the wireless between the wayside device and on-board device. The wayside device collects its location and speed from each train and transmits the distance from the forwarding train to the speed-limit position to it. The on-board device controlling device controls the speed optimum for the train. In the case of the RF-CBTC system used in Korea, transmission frequency is 2.4 [GHz]. It is the range of ISM(Industrial Scientific and Medical equipment) band and transmission of voice and data is performed by CDMA (Code Division Multiple Access) method. So noises are made in the AWGN (Additive White Gaussian Noise) and fading environment. Currently, the SNR (Signal to Noise Ratio) is about 20 [dB], so due to bit errors made by noises, transmission of reliable information to the train is not easy. Also, in the case that two tracks are put to a single direction, it is needed that two trains transmit reliable voice and data to a wayside device. But, by noises, it is not easy that just a train transmits reliable information. In this paper, we estimated the BER (Bit Error Rate) related to the SNR of voice and data transmission in the environment such as AWGN and fading from the RF-CBTC system using the CDMA method. Also, we supposed the SNR which is required to meet the BER standard for voice and data transmission. By increasing the processing gain that is a ratio of chip transmission to voice and data transmission, we made possible voice and data transmission from maximally two trains to a wayside device, and demonstrated it by using Matlab program.

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