• Title/Summary/Keyword: Passenger comfort

검색결과 206건 처리시간 0.023초

승차감 향상을 위한 자동열차운전시의 제어패턴에 관한 연구 (A Study on ATO Control Pattern for Improving the Passenger's Comfort)

  • 신한순;원충연
    • 조명전기설비학회논문지
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    • 제15권2호
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    • pp.49-56
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    • 2001
  • 본 논문은 기존 전동차의 자동운전(ATO : Automatic Train Operation)시 발생되는 승차감 저하의 원인을 분석, 제어패턴의 수정을 통한 승차감 성능 향상에 관한 것이다. 인천지하철 1호선을 중심으로 전동차에 적용된 자동열차운전 제어기의 특성, 주행제어 원리, 거리 및 속도의 산출 방법을 제시하고 기존의 ATO 제어패턴을 분석한다. 분석을 통하여 기존 운전제어장치에서 산출된 제어패턴을 승차감 관점에서 재조명하고 주행시 고려되는 선로 환경에 대한 조건을 충족시키면서 승차감 결정의 핵심요소인 가가속도(Jerk)의 주행 특성을 최적화하여 향상된 승차감 성능을 갖는 제어패턴을 산출하였다. 도출되는 결과의 입증을 위하여 제어 패턴을 시뮬레이션하고 현차를 이용하여 본선 주행시험을 실시한 후 그 결과를 승차감의 관점에서 기존 제어패턴시의 결과 값과 비교, 분석하였다.

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PIV를 이용한 실차 내부 환기유동의 정량적 속도장 측정 (PIV Measurements of Ventilation Flow inside a Passenger Compartment)

  • 이진평;이상준
    • 한국가시화정보학회지
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    • 제9권3호
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    • pp.24-29
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    • 2011
  • The improvement of climatic comfort is crucial not only for passenger comfort but also for driving safety. Therefore, a better understanding on the flow characteristics of ventilation flow inside the passenger compartment is essential. Most of the previous studies investigated the ventilation flow using Computational Fluid Dynamics (CFD) calculations or scale-down water-model experiments. In this study, the ventilation flow inside the passenger compartment of a real commercial automobile was investigated using a Particle Image Velocimetry (PIV) velocity field measurement technique. Under real operating conditions, the velocity fields were measured at several vertical planes for several ventilation modes. The experimental data obtained from this study can be used to understand the detailed flow characteristics in the passenger compartment of a real car and to validate numerical predictions.

철도차량 냉방 및 난방장치의 환경성능 시험방안 연구 (Study on the environmental performance test of cooling and heating equipments' of passenger cabin)

  • 조영민;이준석;박덕신;권순박;정우성
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2009년도 춘계학술대회 논문집
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    • pp.223-228
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    • 2009
  • Cooling and heating equipments of railroad passenger cabin is one of the most important part in keeping the good thermal comfort of the passengers. The bad performance of these equipments usually results in the comfort of the passengers. However, there is no testing method for cooling and heating equipments during manufacturing the passenger car, and calculation method is frequently used. Many railroad operators spend a lot of money for the maintenance. In this study, a new environmental performance test for railroad passenger cabin was suggested. The temperature of the chamber will be changed from $-40^{\circ}C$ to $60^{\circ}C$. The performance test of cooling and heating equipment in controlling the passenger cabin temperature was carried out under various temperature condition. The testing method to investigate the effect of artificial sunlight irradiation on the passenger cabin temperature was also suggested.

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타이어 공기압에 따른 ER 댐퍼 장착 승용차의 승차감분석 (Ride Comfort Analysis of Passenger Vehicle Featuring ER Damper with Different Tire Pressure)

  • 성금길;최승복
    • 한국소음진동공학회논문집
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    • 제26권2호
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    • pp.210-216
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    • 2016
  • In this work, performance analysis to improve ride comfort of an ER (electrorheological) fluid damper for a mid-sized passenger vehicle in terms of tire pressure is presented. An ER damper by considering specification for a mid-sized commercial passenger vehicle is proposed and mechanically designed. After manufacturing and assembling the proposed ER damper with design parameters, their performance such as field-dependent damping forces are experimentally measured. A quarter-vehicle ER ECS (Electronic Control Suspension) system consisting of the ER damper, sprung mass, spring, sky-hook controller and tire is constructed to analysis the ride comfort performances. Vertical tire stiffness with different tire pressure is experimentally measured and investigated. In addition, ride comfort analysis such as vertical acceleration root mean square (RMS) of sprung mass is investigated under bump road using quarter-vehicle test equipment.

Virtual Seat Method를 이용한 승용차량 시트의 정차시 진동에 대한 승차감 평가 (Evaluation of Ride Comfort of the Passenger Vehicle Seat on Idle Vibration by Virtual Seat Method)

  • 이재영;안세진;정의봉
    • 한국소음진동공학회논문집
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    • 제23권7호
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    • pp.631-639
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    • 2013
  • Virtual seat method(VSM) which is an evaluation method combined objective and subjective process is used in this study in order to determine seat comfort index of idle vibration of passenger vehicle. The VSM is implemented by two steps which are for objective index in the first step and for subjective estimation in the second step. In the study, two seats mounted on passenger vehicle was compared in terms of dynamic seat comfort by six subjects employed for the VSM method as well as SEAT value which is a conventional objective method. It is concluded that the dynamic comfort index by the VSM is more reliable than the SEAT value thanks to adding subjective evaluation on top of the objective result.

틸팅특성과 승차감을 고려한 틸팅열차의 곡선부 제한속도 평가 (Evaluation of Speed Limit of Tilting Trains Including Passenger's Comfort in Conventional Line)

  • 엄기영;엄주환;여인호;유영화
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2004년도 춘계학술대회 논문집
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    • pp.927-934
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    • 2004
  • For the purpose of speed-up of conventional lines with many curves, the introduction and operation of tilting train is under process. Those are Joong-Ang, Jang-Hang and Ho-nam lines etc. Tilting trains can run a curve section faster than existing trains without a significant violation of passenger's comfort and enable to reduce operating time in the lines with many curves. In this study, the trains speeds are evaluated, based on the alignment of conventional line, criteria for passenger's comfort and investigated field conditions of the sections where the curves exist. Decision on whether the alignment(transition line) needs to be modified or not is also made. Relative efficiency on curve sections of tilting train to existing trains is approximately $50\%$ in average.

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기존선 완화곡선부의 승차감을 고려한 틸팅차량의 곡선부 제한속도 평가 (Evaluation of Tilting Trains Speed in Conventional Railways Curves Considering Passenger′s Comfort in Transition Area)

  • 엄주환;엄기영;여인호;유영화
    • 한국철도학회논문집
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    • 제7권4호
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    • pp.360-366
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    • 2004
  • The purpose of this paper is to present the alignment layout and the way of modifying transition curve for better operation of tilting trains. It is based on data from field investigation of all curves in conventional line. In general, all curves have transition parts in the beginning and end of the main curve in order to improve the passenger's comfort. The speed-up of conventional line may need an extention of transition curves. This paper checked out whether the transition curve should be modified or not and how to lengthen it. Then the maximum train speeds in curve prior to and after the modification of transition curve were evaluated.

고속철도차량 안전기준 측면에서의 승객 쾌적성 요소 관계 (Passenger Comfort Element Relationship from High-Speed Railway Car Safety Standard Side)

  • 이찬우
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2006년도 추계학술대회 논문집
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    • pp.62-65
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    • 2006
  • From the research which it sees it tried to observe from the comfort viewpoint where the passenger feels the high-speed railway car safety standard which it is see clearly from the domestic railroad safety law. It presents a minimum safety standard, the passengers being an safety most, the place where to sleep receive the service which is comfortable from the railroad safety law and they do there is a most big difference. It analyzed the correlation of the comfort where the passenger feels the vehicle efficiency standard which it is presenting from railroad safety law 59th clause and from the research which it sees consequently.

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Development and Application of New Evaluation System for Ride Comfort and Vibration on Railway Vehicles

  • Yoo Wan-Suk;Lee Chang-Hwan;Jeong Weui-Bong;Kim Sang-Hyun
    • Journal of Mechanical Science and Technology
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    • 제19권7호
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    • pp.1469-1477
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    • 2005
  • Vibrations related to ride comfort should be considered at the beginning of design stage. In general, ride comfort of human is mainly affected by vibration transmitted from the floor and seat. Also, vibration level is very important regarding with running safety on freight wagon. To ensure ride comfort for passenger coach and vibration level for freight wagon, tests had been repeated by different test procedures with several equipments. With different measuring and evaluations for these results, it took much time to evaluate test results. In this paper, a new evaluation procedure was developed combining several software for ride comfort and vibration level test on railway vehicles. In addition, this developed system is capable of ride comfort test and vibration test by a single integrated system that is capable of immediate reporting the test result. With this developed system, the comfort in a passenger coach and the vibration in a freight car were evaluated. And the simulation results from the proposed system are verified by a field test.

차량 내부 탑승자의 쾌적성 평가를 위한 초기 냉방운전 성능에 대한 수치해석적 연구 (Numerical Analysis on the Initial Cool-down Performance Inside an Automobile for the Evaluation of Passenger's Thermal Comfort)

  • 김윤기;양장식;백제현;김경천;지호성
    • 한국자동차공학회논문집
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    • 제18권5호
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    • pp.115-123
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    • 2010
  • Cool-down performance after soaking is important because it affects passenger's thermal comfort. The cooling capacity of HVAC system determines initial cool down performance in most cases, the performance is also affected by location, and shape of panel vent, indoor seat arrangement. Therefore, optimal indoor designs are required in developing a new car. In this paper, initial cool down performance is predicted by CFD(computational fluid dynamics) analysis. Experimental time-averaging temperature data are used as inlet boundary condition. For more reliable analysis, real vehicle model and human FE model are used in grid generation procedure. Thermal and aerodynamic characteristics on re-circulation cool vent mode are investigated using CFX 12.0. Thermal comfort represented by PMV(predicted mean vote) is evaluated using acquired numerical data. Temperature and velocity fields show that flow in passenger's compartment after soaking is considerably unstable at the view point of thermodynamics. Volume-averaged temperature is decreased exponentially during overall cool down process. However, temperature monitored at different 16 spots in CFX-Solver shows local variation in head, chest, knee, foot. The cooling speed at the head and chest nearby panel vent are relatively faster than at the knee and foot. Horizontal temperature contour shows asymmetric distribution because of the location of exhaust vent. By evaluating the passenger's thermal comfort, slowest cooling region is found at the driver's seat.