• Title/Summary/Keyword: Passenger Service Equipments

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A Study on Passenger Information Integrated System Based IP (IP 기반의 승객안내 통합시스템에 대한 고찰)

  • Kwon, Myoung-Jin;Jeon, Yoon-Su;Lee, Chan-Yong;Park, Sung-Ho
    • Proceedings of the KSR Conference
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    • 2011.05a
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    • pp.1716-1721
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    • 2011
  • The Public Address and Passenger Information System of Rolling Stock should be able to perform automatic announcements in connection with TCMS(Train Control and Monitoring System), common announcements and emergency announcements for safe operation and the passengers. CCTV(Closed Circuit Television) System also should be able to watch passenger compartment for safety. Those equipments are very important thing for train service and safety. but the installation of equipment is restricted by space, weight, modulation. therefore, Passenger Information Intergrated System(PIIS) is required to consider economical efficiency, technical trend, expansion and space insufficiency. and system based on IP network has to be considered as new PIIS. so PIIS could meet economical efficiency and expansion. and it could go further and share network with TCMS and others.

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A Study for Reliability Improvement of Passenger Service Equipment using Failure Analysis (고장 분석을 통한 승객서비스 장치의 신뢰성 향상방안 연구)

  • Roh, Bumtaek;Chung, Kwangwoo
    • Journal of the Korean Society for Railway
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    • v.19 no.5
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    • pp.609-616
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    • 2016
  • The Passenger Service Equipment(PSE) provide various train operation data such as flag station data. When PSE incur service failures or errors, passengers who use the train feel great inconvenience. In this paper, I have chosen PSE that were important to passengers and have applied Reliability Centered Maintenance(RCM), deviating from the existing perspective that operators have taken to perform RCM. FMEA/FMECA was performed for reliability analysis of the PSE. The highly critical device among the PSE is defined as the Passenger Information Control System(PICS), which is used to control the automatic announcement and signaling board. Through Weibull distribution of the PICS, failure analysis was performed. Based on the analyzed results, I have proposed a solution that will minimize service failure of PICS.

Metro Telecommunication Basis Facilities Standardization and Functional Improvement Research (도시철도 구내정보통신 기반설비 표준화 및 기능 향상방안)

  • Kim Moon-Tae;Yoon In-Young
    • Proceedings of the KSR Conference
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    • 2005.11a
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    • pp.964-968
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    • 2005
  • The standardization of information communication is doing a Internal each other connection and each other characteristic stability operation security in objective. From the low-speed network of the subway operation beginning currently it changes with the superhigh speed digital information transmission communication service environment which is a quality service, the hazard which plans the quality improvement of the efficient communication service use which hits to here and passenger service the standardization of the technical standard which stands and the improvement which hits to an engineering standard and facility must come to accomplish. The facility which existing is been old or the enclosure communication equipments which are insufficient. it improves, establishment itexpands efficiently, like this facilities it is stabilized and it is economic and rationally use maintenance it manages with the plan for the inside and outside of the country information communication relation technical standard and engineering standard service feature improvement and future expandability and economical efficiency, the possibility of having a pliability in order to be, rational technical standard and standard it takes a triangular position, efficient characteristic security of information communication service there is a place objective which promises the rational development of course city railroad communication system with character. Function improvement of enclosure communication base equipment, against an improvement and standardization plan it described trom the prosecution which it sees.

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Development of Passenger Forecasting System to Improve the Service for the Passenger in the Terminal Building (여객 서비스 개선을 위한 승객예고 시스템 개발)

  • Lee, Sang-Yong;Yoo, Kwang-Eui
    • Journal of Korean Society of Transportation
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    • v.23 no.7 s.85
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    • pp.181-190
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    • 2005
  • The time required for airport process is considered more important as the airports are becoming bigger. International Civil Aviation Organization mattes this international standards and recommends not to exceed it. The passenger forecasting model is developed to predict the number of passengers at the check-in counter, and the area of formalities for departure and entry. In case of forecasting the number of outbound-passengers. the patterns of show-up lead time(SLT) at the check-in counter and lag time from check-in counter to the area of departure formalities are modeled in terms of time. On the other hand, the matter of the choice of check-in counters and areas of departure formalities are modeled in terms of space. In case of forecasting the number of inbound-passengers and transfer passengers, the time of airplane movement from arrival to block on at the gate and the time of passengers required from gate to the area of formalities for entry are modeled in terms of time. While the matter of the choice of gates and the areas of formalities for entry are modeled in terms of space. The average error of forecasting outbound-passengers and inbound-passengers is respectively 15% and 10%, which are considered excellent with the 5% error of passenger reservation information as input data. Through the development of passenger forecasting models, we assure we could provide passengers with valuable service because we allocate resource such as employees and equipments according to the degree of concentration of passengers.

A Simulation Model for the Elevator Queueing System (승강기 대기시스템의 시뮤레이션 모델)

  • O Hyeong-Jae;Min Eun-Gi
    • Journal of the military operations research society of Korea
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    • v.12 no.1
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    • pp.87-105
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    • 1986
  • Among the various types of waiting line systems, the elevator servicing system is quite different from the usual queueing system in view of the service characteristics. For example, the FIFO discipline is not always valid depending upon the situation when the direction of first-come customer's is opposite of the operating elevator direction and at that time a later-arrived one has a luck to be served first. In this paper, a simulation model is constructed and tested by the sample data and the results have turned out to be fairly adequate. This model, therefore, will provide a good guide to anyone who is interested in the decision of optimal location selection of no-passenger elevator in high buildings whatsoever. This model is also available, with slight modification, to the problem of city bus dispatching or any other waiting line problems where the servicing equipments are moving.

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A Study on Characteristic Analysis of Auxiliary Power Supply for Railway Vehicle (철도차량 보조전원장치 특성 분석에 관한 연구)

  • Han, Young-Jae;Han, Seong-Ho;Lee, Tae-Young;Lee, Su-Gil;Lee, Young-Ho
    • The Transactions of the Korean Institute of Electrical Engineers P
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    • v.66 no.4
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    • pp.177-181
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    • 2017
  • Auxiliary power supply for railway vehicle is a equipment that focuses on the service of passengers in a vehicle. It supplies power to controllers used in heating and cooling devices, fluorescent lamps, batteries and many other electrical equipments. Most of the auxiliary power supply for railway vehicle are mainly used for the round trips and circulation routes within the metropolitan area and have a capacity of 170~200 kVA. In this study, we developed the auxiliary power supply capacity to 240kVA for 200km/h class. As such, the auxiliary power supply is an important device for securing the reliability and safety of the railway vehicle and improving the passenger convenience, so the performance verification of the performance must be ensured. In this paper, 240kVA auxiliary power supply is developed. Also, performance of the auxiliary power supply manufactured through the analysis of various characteristics related to the auxiliary power supply was confirmed while operating the actual line.