• 제목/요약/키워드: Ride Value

검색결과 84건 처리시간 0.025초

Online condition assessment of high-speed trains based on Bayesian forecasting approach and time series analysis

  • Zhang, Lin-Hao;Wang, You-Wu;Ni, Yi-Qing;Lai, Siu-Kai
    • Smart Structures and Systems
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    • 제21권5호
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    • pp.705-713
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    • 2018
  • High-speed rail (HSR) has been in operation and development in many countries worldwide. The explosive growth of HSR has posed great challenges for operation safety and ride comfort. Among various technological demands on high-speed trains, vibration is an inevitable problem caused by rail/wheel imperfections, vehicle dynamics, and aerodynamic instability. Ride comfort is a key factor in evaluating the operational performance of high-speed trains. In this study, online monitoring data have been acquired from an in-service high-speed train for condition assessment. The measured dynamic response signals at the floor level of a train cabin are processed by the Sperling operator, in which the ride comfort index sequence is used to identify the train's operation condition. In addition, a novel technique that incorporates salient features of Bayesian inference and time series analysis is proposed for outlier detection and change detection. The Bayesian forecasting approach enables the prediction of conditional probabilities. By integrating the Bayesian forecasting approach with time series analysis, one-step forecasting probability density functions (PDFs) can be obtained before proceeding to the next observation. The change detection is conducted by comparing the current model and the alternative model (whose mean value is shifted by a prescribed offset) to determine which one can well fit the actual observation. When the comparison results indicate that the alternative model performs better, then a potential change is detected. If the current observation is a potential outlier or change, Bayes factor and cumulative Bayes factor are derived for further identification. A significant change, if identified, implies that there is a great alteration in the train operation performance due to defects. In this study, two illustrative cases are provided to demonstrate the performance of the proposed method for condition assessment of high-speed trains.

스마트 모빌리티 서비스를 위한 비용추정 (A Study on Cost Estimation for Smart Mobility Service)

  • 천서형;김동연;안재현;박규홍
    • 디지털융복합연구
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    • 제19권11호
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    • pp.301-313
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    • 2021
  • 자동차 산업은 차량 소유에서 공유로, 그리고 제조에서 서비스로의 패러다임 전환을 맞이하고 있다. 그러나 스마트 모빌리티 서비스의 경제적 가치가 항상 사용자에게 긍정적이라고 단정하기는 어렵다. 차량 소유 또는 공유와 관련된 비용은 서비스 혜택의 관점뿐만 아니라 잠재적인 사용자의 관점에서도 추정하기가 매우 어렵다. 따라서 본 연구는 비용 측면에 초점을 맞춰 전동화, 첨단 운전 보조 시스템(ADAS), 그리고 승차 공유 서비스 참여라는 세 가지 주요 요소를 기반으로 비용 추정 모델을 개발한다. 모델 분석 결과 단순 비용의 관점에서는 전동화, 승차 공유 참여 등 비용 혜택을 받는 경우 결과적으로 낮은 비용이 추정되었고, 추가로 민감도 분석을 통한 다양한 요인에 대한 분석을 시행하였다. 본 연구의 결과는 스마트 모빌리티 서비스 시장에서 잠재적 사용자와 제조업체를 위한 비용 예측 및 전략에 대한 유용한 통찰력을 제공할 수 있다.

관절형 경량전철의 현가특성 최적설계 (Optimum Design of Suspension Characteristics for Light Rail Vehicle)

  • 허신;하성도
    • 연구논문집
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    • 통권27호
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    • pp.35-45
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    • 1997
  • The dynamic design process for the articulated bogie of light rail vehicle(LRV) was studied to design a primary and secondary suspension elements. Suspension stiffness and damping is selected on the basis of the ride quality and suspension stroke trade-off. LRV was modeled as a 2 d.o.f linear system for the design of vertical suspension characteristics and a 4 d.o.f linear system for the design of lateral suspension characteristics. FRA's class-4-track irregularity was used for the exciting disturbance on track. The optimum value of primary and secondary suspension characteristics was determined using this design process.

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안내궤도 차량의 조향 안정성 평가 (An Evaluation on the Steering Stability of the Guideway Vehicle)

  • 윤성호
    • 한국자동차공학회논문집
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    • 제10권1호
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    • pp.209-215
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    • 2002
  • A study of the guideway vehicle was made for a comparison of ride stabilities between its two primary steering types; one is the front wheel steering and the other the front-rear wheel. A numerical model as a closed loop system was built for an investigation of various factors to have an influence on the vehicular critical speed which is closely associated with ridabilities. It was shown that dynamics stabilities of the front steering type was much better over a large value of steering gain and the longer distance between front axle and guide link for both types provided better stabilities as well. A large steering gain ratio of the front to the rear significantly plays an important role in an improvement of stability in the front-rear steering. To observe a qualitative trend on stability behaviors, the root locus was obtained by considering a time lag which may be frequently caused by the complicated steering mechanism. In performing so, the appropriate selection of steering gain had a greater effect on the front-rear steering vehicle far more ride comfort. In addition, the dynamics model proposed here can be utilized for a more accurate evaluation on the vehicle design in lateral or yawing absorber and moreover expanded for the analysis of independent four-wheel steering vehicle.

비선형 차량능동현가시스템의 주파수 감응감쇠 특성연구 (Frequency Dependent Damping for a Nonlinear Vehicle Active Suspension System)

  • 김주용
    • 한국기계기술학회지
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    • 제13권2호
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    • pp.45-54
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    • 2011
  • A vehicle suspension system performs two functions, the ride quality and the stability, which conflict with each other. Among the various suspension systems, an active suspension system has an external energy source, from which energy is always supplied to the system for continuous control of vehicle motion. In the process of the linearization for the nonlinear active suspension system, the frequency dependent damping method is used for the exact modelling to the real model. The pressure control valve which is controlled by proportional solenoid is the most important component in the active suspension system. The pressure control valve has the dynamic characteristics with 1st order delay. Therefore, It's necessary to adopt the lead compensator to compensate the dynamics of the pressure control valve. The sampling time is also important factor for the control performances. The sampling time value is proposed to satisfy the system performances. After the modelling and simulation for the pressure control valve and vehicle dynamic, the performances of the vehicle ride quality and the stability are enhanced.

고속철도차량의 가속도 값을 이용한 차량 동특성 분석 (Dynamic analysis for High-speed train using acceleration value)

  • 김영모;최성훈;김기환;박태원
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2007년도 춘계학술대회 논문집
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    • pp.169-174
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    • 2007
  • Adopting articulated bogie system, the HSR350x and KTX have similar physical mechanical characteristic, but they show different dynamic characteristics due to different position of suspensions and those physical properties. The low level vibration frequency which effects on the ride comfort of passengers and the high level vibration frequency which is related to noise of vehicle have been measured by accelerometers mounted on Wheel sets, Bogies and Car bodies to analysis the dynamic characteristics of the High-Speed Trains. The KTX number 36 is utilized to measure the lateral and vertical acceleration value of car body, and total measurement system of HSR350x have been used to acquire acceleration data. The sampling frequency of data is 500Hz generally, but the Car body at TT2 of HSR350 has 1000Hz exceptionally.

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자동차 언더바의 구조 및 피로해석을 통한 내구성 연구 (A Study on Durability of Under Bar at Car through Structural and Fatigue Analysis)

  • 한문식;조재웅
    • 한국기계가공학회지
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    • 제14권2호
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    • pp.44-50
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    • 2015
  • This study investigated the durability of the under bar of a car through structural and fatigue analysis. Model 1 had the lowest value among three kinds of models. In the case of the maximum equivalent stress and displacement at structural analysis, model 1 showed the highest durability. Also, models 3 and 2 showed structural durability in order of this value. In the case of fatigue analysis, the maximum fatigue lives of the three models were equal to $2{\times}10^7$cycles. However, model 1 showed the highest value among the three models, as the minimum fatigue life of model 1 becames 92.56 cycles. Also models 3 and 2 showed fatigue durability in order of this value. The maximum possibility of fatigue damage for models1,2,and 3 became 30%. If the results of this study are applied to change the design shape of the under bar of cars, the ride comfort for automobile passengers and car durability can be improved.

시트 동특성을 고려한 인체 진동 해석 (Human Body Vibration Analysis under Consideration of Seat Dynamic Characteristics)

  • 강주석
    • 한국산학기술학회논문지
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    • 제13권12호
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    • pp.5689-5695
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    • 2012
  • 본 연구에서는 차량에 적용되는 시트 재질인 폴리우레탄 폼의 점탄성 특성을 고려하여 시트와 인체의 진동특성을 시험 및 수치해석 방법을 이용하여 분석하였다. 압축 시험을 통해 폴리우레탄 폼의 점탄성 특성인 비선형성과 준-정역학적 특성을 구하였다. 또한 컨벌루션 적분법 및 비선형 강성 모델을 이용하여 폴리우레탄 폼의 점탄성 특성을 수학적으로 모델링하였다. 시트의 승차감 기여도를 분석하기 위하여 시트의 동역학 모델과 ISO5982의 표준 인체 수직진동 모델을 이용하여 수직 진동모델을 구성하고 관련 운동방정식을 유도하였다. 비선형 운동방정식은 Runge-Kutta 적분법을 이용하여 수치해석 시뮬레이션을 수행하였다. 철도차량의 차체 바닥에서 측정한 진동가속도 입력에 대한 시트와 인체의 응답 특성을 분석하고 시트 설계 파라미터에 대한 승차감 지수 값들의 변화를 분석하여 시트 설계에 대한 방법론을 제시하고자 한다.

철도차량 주행안전성 향상을 위한 현가장치 최적화 연구 (A Study on the Optimization of Suspension Characteristics for Improving Running Safety of Railway Vehicle)

  • 이영엽;이희성
    • 한국철도학회논문집
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    • 제12권6호
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    • pp.909-914
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    • 2009
  • 철도차량의 주행안전성과 승차감을 결정하는데 있어서 현가장치는 중요한 요소이며, 현가장치 강성은 차량 설계 단계의 중요한 설계변수이다. 고속에서의 주행안전성을 위해 1차 현가장치에 강한 강성을 부여하는데 이는 곡선 주행성능을 감소시키는 단점이 있어 주행안전성과 곡선주행성능을 절충하면서 현가장치의 강성을 조절하고 있다. 본 연구에서는 철도차량의 현가장치 강성을 변화시켜 가면서 주행안전성 향상을 위한 현가장치를 최적화하는데 목적을 두고 있다. 현가장치 최적화를 위해 1, 2차 현가장치의 위치 및 길이, 폭, 강성, 감쇠력 등을 설계 변수로 하여 해석을 진행하였다. 현가장치 최적화 해석결과, 1, 2축 내 외측 차륜의 탈선계수 값이 초기 모델과 비교하여 감소한 결과를 확인할 수 있었다.

A Calculation Method for the Nonlinear Crowbar Circuit of DFIG Wind Generation based on Frequency Domain Analysis

  • Luo, Hao;Lin, Mingyao;Cao, Yang;Guo, Wei;Hao, Li;Wang, Peng
    • Journal of Power Electronics
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    • 제16권5호
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    • pp.1884-1893
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    • 2016
  • The ride-through control of a doubly-fed induction generator (DFIG) for the voltage sags on wind farms utilizing crowbar circuits by which the rotor side converter (RSC) is disabled has being reported in many literatures. An analysis and calculation of the transient current when the RSC is switched off are of significance for carrying out the low voltage ride through (LVRT) of a DFIG. The mathematical derivation is highlighted in this paper. The zero-state and zero-input responses of the transient current in the frequency domain through a Laplace transformation are investigated, and the transient components in the time domain are achieved. With the characteristics worked out from the linear resolving without modeling simplification, the selection of the resistance in the linear crowbar circuit and the value conversion from a linear circuit to a nonlinear one is proposed to setup the attenuation rate. In terms of grid code requirements, the theoretical analysis for the time constant of the transient components attenuation insures the controllability when the excitation of the RSC is resumed and it guarantees the reserved time for the response of the reactive power compensation. Simulations are executed in MATLAB/SIMPOWER and experiments are carried out to validate the theoretical analysis. They indicate that the calculation method is effective for selection of the resistance in a crowbar circuit for LVRT operations.