A feasibility study of train automatic stop control using range sensors

被引:10
作者
Yoshimoto, K
Kataoka, K
Komaya, K
机构
来源
2001 IEEE INTELLIGENT TRANSPORTATION SYSTEMS - PROCEEDINGS | 2001年
关键词
train control; ATO; TASC; range sensor;
D O I
10.1109/ITSC.2001.948763
中图分类号
TP18 [人工智能理论];
学科分类号
081104 ; 0812 ; 0835 ; 1405 ;
摘要
Automatic train control plays a key role in improving the efficiency and safety of train movements, as well as the riding comfort of passengers. In Japan, train control systems have been successfully implemented since 1980s. These systems have been required to obtain train position and speed as accurately as possible. This has mostly depended on axle generators and transponders. More specifically, the axle generators measure the speed and the moving distance from the reference points specified by the transponders. However, train control systems using these devices still fail to get correct train position, due to skidding or slipping, until passing over reference points. This paper focuses on train automatic stop control (TASC), and presents a new TASC system using a commercial range sensor instead of transponders so that a train implementing the system can detect its position continuously.
引用
收藏
页码:802 / 807
页数:6
相关论文
共 26 条
  • [1] Development of Automatic Parameter Tuning for Train Automatic Stop Control Device
    Oda, Atsushi
    Niimi, Ikuo
    Maki, Kentaro
    ELECTRONICS AND COMMUNICATIONS IN JAPAN, 2017, 100 (11) : 15 - 22
  • [2] Development of automatic parameter tuning for train automatic stop control device
    Oda A.
    Niimi I.
    Maki K.
    IEEJ Trans. Ind Appl., 9 (629-634): : 629 - 634
  • [3] Study on iterative learning control in automatic train operation
    Wang, Cheng
    Tang, Tao
    Luo, Ren-Shi
    Tiedao Xuebao/Journal of the China Railway Society, 2013, 35 (03): : 48 - 52
  • [4] The Study of Automatic Train Operation (ATO) System
    Liu, Junli
    Li, Shufen
    Lu, Junqin
    MICRO NANO DEVICES, STRUCTURE AND COMPUTING SYSTEMS, 2011, 159 : 562 - +
  • [5] The Study of Carbody Control for Conventional Train
    Lee, Su-Gil
    2013 10TH INTERNATIONAL CONFERENCE ON UBIQUITOUS ROBOTS AND AMBIENT INTELLIGENCE (URAI), 2013, : 704 - 707
  • [6] Model Reference Adaptive algorithm Designed for Automatic Train Braking Control
    Luo, Hengyu
    Xu, Hongze
    SUSTAINABLE DEVELOPMENT OF URBAN INFRASTRUCTURE, PTS 1-3, 2013, 253-255 : 1374 - 1379
  • [7] Object-oriented approach for Automatic Train Operation control systems
    Rachel, FM
    Cugnasca, PS
    COMPUTERS IN RAILWAY SIX, 2004, 15 : 421 - 430
  • [8] Accuracy Control of Train Automatic Driving Parking-A Case Study of Nanning Rail Transit Line 4
    Chen, Jianqiu
    Pang, Yanzhi
    Qing, Zhaoyun
    Zhao, Tanyi
    SEVENTH INTERNATIONAL CONFERENCE ON TRAFFIC ENGINEERING AND TRANSPORTATION SYSTEM, ICTETS 2023, 2024, 13064
  • [9] THE ADVANCED AUTOMATIC CONTROL SYSTEM FOR TRAIN OPERATION - RESEARCH ON MOVING AUTOBLOCK SYSTEM
    WANG, XS
    NING, B
    DING, ZT
    CHENG, YH
    AUTOMATIC CONTROL - WORLD CONGRESS 1993, VOL 3: APPLICATION I, 1994, : 153 - 156
  • [10] Federated learning-based edge computing for automatic train operation in communication-based train control systems
    Zhang, Zhouhao
    Jiang, Hailin
    Zhao, Hongli
    Li, Yang
    JOURNAL OF SUPERCOMPUTING, 2024, 80 (11) : 16093 - 16111