• Title/Summary/Keyword: Urban Transit Vehicle

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A study on the improvement of pending issues of subway corporation in Korea (국내 도시철도 건설 및 운영기관의 기술현안과 개선방향( I ))

  • 한석윤;홍재성;박성혁
    • Proceedings of the KSR Conference
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    • 2002.05a
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    • pp.61-66
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    • 2002
  • As the technique in urban transit is composite system which is composed of vehicle, power supply, signal and communication, rail structure etc, it is very difficult to search the cause of technical troubles. This paper describes the improvement on pending issues which is discussed in urban transit corporation's conference. The conference for discussion on technical issues will be held every year, and the result of conference will be opened.

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Development of propulsion system for the Urban Transit Maglev System (도시형 자기부상열차 적용을 위한 추진제어장치의 개발)

  • 이은규;송영신;최재호
    • Proceedings of the KSR Conference
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    • 2002.10a
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    • pp.440-445
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    • 2002
  • In this paper, traction system for urban transit maglev system is proposed. Using vector control strategy to control magnitude and frequency of output voltage transiently is general. But in case of traction system for railway vehicle, it is impossible that adapt vector control because there is one-pulse mode in a high speed region. So this paper proposes the control strategy using vector control in a low speed region and slip frequency control in a high speed region. And also proposes overmodulation method that makes to change in one-pulse mode softly. The performance of traction system will be verified by simulation results using ACSL.

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A Study for the Development of the Reliability/Availability Management System of the Urban Transit Vehicles (I) (도시철도차량 신뢰도/가용도 관리시스템 개발에 관한 연구 (I))

  • Park, Kee-Jun;Chung, Jong Duk
    • Journal of the Korean Society for Railway
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    • v.16 no.3
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    • pp.163-168
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    • 2013
  • The maintenance of an urban transit vehicle accounts for 60-70% of total costs over its entire life cycle, so it is critical to reduce maintenance costs and extend the life times of urban transit EMUs (electric multiple units) through research. For these researches, the reliability and availability data management system was constructed through the case study of several industries in the domestic and international in the field of reliability centered maintenance system. And we created a system to manage reliability and availability data for use in urban-EMU maintenance. In this work, we identified the major functions needed to successfully develop the system. Here we report the successful development of a reliability and availability data management system for maintenance of urban transit vehicles.

A Study on the Failure of Classification for IT Maintenance System of Urban Transit (도시철도차량 유지보수 정보화 시스템을 위한 사고/고장 분류체계에 관한 연구)

  • Lee H Y;Park K.J.;Ahn T.K;Kim G.D;Yoon S.K;Lee S.I.
    • Proceedings of the KSR Conference
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    • 2003.10b
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    • pp.259-264
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    • 2003
  • Failure code system must include data of maintenance history, classification of failure, affective range and situation when failure occur. But the present failure code system have used a simple code system for classification to include only merchandise and tools. Advantageously, expansional standard code system that will be developed, it make that users can take steps of standardized overhaul and inspection as proposal maintain contents when failure occur or something wrong in vehicle of urban transit. Standardized failure codes must be developed and used that manufacturing companies and urban transit operating companies in order to give effect to maintenance works.

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A Study on the Facility Installation for Safety Operation of Urban Transit (도시철도의 안전운행을 위한 시설물 설치에 관한 연구)

  • Lee, Woo-Dong
    • Proceedings of the KIEE Conference
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    • 2003.07b
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    • pp.1323-1325
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    • 2003
  • In field of Urban transit safely, It must be not only secured vehicle but also every areas like power, signal, communication, track, tunnel, operating facilities. Likewise it is very important not only hardware system like vehicles, facilities but also software system like action of engine driver, duty officer. In other to secure safety of hardware, soft ware, it is very important systemic process. In Korea, Many operating companies neglect to invest in safely and ignore technical development about safety because of management. Safely was considered in subway system and many studies were accomplished about safety in subway system in advanced county like U.K, USA. Hence, in this paper, Conditions and improvement of minimum considerable hardware and software are proposed for safe operation in Urban transit.

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A Simulation Model for Evaluating Demand Responsive Transit: Real-Time Shared-Taxi Application (수요대응형 교통수단 시뮬레이션 방안: Real-Time Shared-Taxi 적용예시)

  • Jung, Jae-Young
    • International Journal of Highway Engineering
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    • v.14 no.3
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    • pp.163-171
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    • 2012
  • Demand Responsive Transit (DRT) services are becoming necessary as part of not only alternative transportation means for elderly and mobility impaired passengers, but also sustainable and flexible transportation options in urban area due to the development of communication technologies and Location Based Services (LBS). It is difficult to investigate the system performance regarding vehicle operational schemes and vehicle routing algorithms due to the lack of commercial software to support door-to-door vehicle simulation for larger area. This study proposes a simulation framework to evaluate innovative and flexible transit systems focusing on various vehicle routing algorithms, which describes data-type requirements for simulating door-to-door service on demand. A simulation framework is applied to compare two vehicle dispatch algorithms, Nearest Vehicle Dispatch (NVD) and Insertion Heuristic (IH) for real-time shared-taxi service in Seoul. System productivity and efficiency of the shared-taxi service are investigated, comparing to the conventional taxi system.

An Analysis about Consumed Energy of Electric Multiple Unit Used TCMS Data on the Condition of Safety Driving (안전운행 조건하에서 TCMS 데이터를 활용한 전동차 주행에너지 해석)

  • Kim, Kyujoong;Lee, Keunoh;An, Sukwan
    • Journal of the Korean Society of Safety
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    • v.27 no.6
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    • pp.31-42
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    • 2012
  • Urban transit vehicle that uses electrical energy, is faster, safer and energy-efficient public transit than other means. As a Research method, the Matlab/Simulink are used to modeling a regenerative brake-capable train, and actual parameters such as powering and braking characteristics, all kinds of resistance, passenger load, velocity, gradient, radius of curve etc and powering and breaking commands per time or distance are inputted to train's dynamic equation, then a simulation program is made and used to yield train driving pattern and driving time and the amount of driving energy used thereby at auto and manual operation and at all sector.

A Study on Capacity Design of Energy Storage System for Urban Transit System (도시철도시스템용 에너지저장시스템 용량설계에 관한 연구)

  • Lee, Han-Min;Kim, Gil-Dong;Lee, Chang-Mu
    • 한국신재생에너지학회:학술대회논문집
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    • 2007.11a
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    • pp.697-700
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    • 2007
  • Six thousands of vehicles are operated on Korean urban transit system. 95% of them have regeneration system. Especially, the VVVF-Inverter vehicle has a merit of the highest regeneration rate. Therefore, the energy storage system is needed to be developed to use regeneration energy when the vehicle is braking. Therefore, Measuring regeneration energy in the substation need to know how much regeneration energy occurs, how much capacity of energy storage system is needed. After measuring regeneration energy, we design the capacity of energy storage system.

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A Study on the Basic Procedure of LCC Analysis for the Urban Transit Vehicle (도시철도 차량에서 LCC 분석의 기본 절차에 관한 연구)

  • Chung, Kwang-Woo;Jeon, Young-Seok;An, Joon-Yong;Kim, Chul-Su;Chung, Jong-Duk
    • Proceedings of the KSR Conference
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    • 2009.05a
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    • pp.643-652
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    • 2009
  • This paper presents brief history and a state-of-the-art survey of Life Cycle Cost (LCC) analysis, in particular LCC analysis in the Urban Transit Vehicle, based on a internationl codes and standards related to LCC analysis. A main objective of the LCC analysis is to quantify the total cost of ownership of a product throughout its full life cycle, which includes research and development, construction, operation and maintenance, and disposal. The predicted LCC is useful information for decision making in purchasing a product, in optimizing design, in scheduling maintenance, or in planning overhaul. This paper presents a LCC procedure consisting of seven steps, which are "Problems definition", "Cost elements definition", "System modeling", "Data collection", "Cost profile development", "Evaluation", and "Verification". Sub-activities to be encompassed in the seven steps procedure are described.

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