• 제목/요약/키워드: Model Car

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최고속도 200km/h급 중국 1등 객차의 동특성 해석연구 (A Study on Dynamic Characteristics of the 200km1h Chinese First Class Passenger Car)

  • 이강운
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 1998년도 추계학술대회 논문집
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    • pp.321-328
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    • 1998
  • In this study we have studied running stability, safety and passenger comfort of the Chinese first class passenger car made by our company and CCRW. A fine analysis model of 72 d.o.f. was constructed for simulating dynamic behavior of the car on straight and curved tracks having irregularity configurations. We have calculated the various characteristic values such as critical speed, lateral force, derailment ratio, wheel unloading ratio and passenger comfort index, then evaluated them by comparing with reference values.

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철도 차량의 연결기 시스템의 충돌시뮬레이션 (Collision Simulation for the Coupler System of Rolling Stock)

  • 맹희영;김진성;박영일
    • 한국생산제조학회지
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    • 제22권3_1spc호
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    • pp.566-572
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    • 2013
  • In this study, a collision simulator for rolling stock that considers the plastic deformation of the car body and the dynamic characteristics of a coupler system was developed using Matlab/Simulink. Normally, a coupler system has functions for both connecting the individual car bodies and absorbing the impact energy. A coupler system is composed of a rubber buffer, hydraulic buffer, and deformation tube elements. The coupler system should protect the car body and prevent damage when the shunt speed is less than 10 km/h, which is the regulation speed based on the safety rule for rolling stock. However, if the shunt speed is greater than 10 km/h, a car body is plastically deformed. Therefore, the modeling of the plastic deformation of a car body should be included in a simulator. This collision simulator can provide the design parameters for a coupler system and car body.

자율주행 차량의 다 차선 환경 내 차량 추종 경로 계획 (Car-following Motion Planning for Autonomous Vehicles in Multi-lane Environments)

  • 서장필;이경수
    • 자동차안전학회지
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    • 제11권3호
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    • pp.30-36
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    • 2019
  • This paper suggests a car-following algorithm for urban environment, with multiple target candidates. Until now, advanced driver assistant systems (ADASs) and self-driving technologies have been researched to cope with diverse possible scenarios. Among them, car-following driving has been formed the groundwork of autonomous vehicle for its integrity and flexibility to other modes such as smart cruise system (SCC) and platooning. Although the field has a rich history, most researches has been focused on the shape of target trajectory, such as the order of interpolated polynomial, in simple single-lane situation. However, to introduce the car-following mode in urban environment, realistic situation should be reflected: multi-lane road, target's unstable driving tendency, obstacles. Therefore, the suggested car-following system includes both in-lane preceding vehicle and other factors such as side-lane targets. The algorithm is comprised of three parts: path candidate generation and optimal trajectory selection. In the first part, initial guesses of desired paths are calculated as polynomial function connecting host vehicle's state and vicinal vehicle's predicted future states. In the second part, final target trajectory is selected using quadratic cost function reflecting safeness, control input efficiency, and initial objective such as velocity. Finally, adjusted path and control input are calculated using model predictive control (MPC). The suggested algorithm's performance is verified using off-line simulation using Matlab; the results shows reasonable car-following motion planning.

ROLL CENTER ANALYSIS OF A HALF-CAR MODEL USING POLE FOR SMALL DISPLACEMENT

  • Lee, J.K.;Shim, J.K.
    • International Journal of Automotive Technology
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    • 제7권7호
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    • pp.833-839
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    • 2006
  • In this paper, roll behavior of three planar half car models are compared. The first model is a simple model whose contact point between a wheel and the ground is assumed to be fixed with a revolute joint. The second model is a modified model of the fIrst model, whose wheel tread width can vary. In this model, the instant center of a wheel with respect to the ground, which is crucial to find the roll center, is assumed to be at the contact point of a wheel and the ground. The last model uses the pole of a wheel with respect to the ground for small displacement as the instant center of a wheel with respect to the ground. Loci of the center of gravity point, the fixed and the moving centrodes which are traces of roll center position in the ground and the body frame respectively, wheel contact points, and instant centers of a wheel with respect to the ground are calculated.

동력전달계와 차량계의 연성 해석을 위한 수학적 모델의 개발 (Mathematical Model for Power Transmission - Vehicle System Coupling Analysis)

  • 공진형;박진호;조한상;박영일;이장무
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2000년도 춘계학술대회논문집A
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    • pp.696-701
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    • 2000
  • In this study, a mathematical model fur analyzing the shift characteristics is proposed. The proposed model comprises power transmission system and vehicle system, which are coupled. And On-road car test is carried out in order to extract model parameters. Tile model is composed of a detailed powertrain, an engine/AT housing, a simplified suspension system. tires and a vehicle body model. On the test, the vehicle accelerations and pitch ratio are measured by using accelerometers and gyro sensor. The other data, for example speeds, a throttle position and a brake signal, are taken from sensors which already exist in the vehicle. Using natural frequency and characteristic equation, vehicle model parameters are extracted from experimental data.

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수량화 이론을 이용한 도시부 터널 내 교통사고 영향요인에 관한 연구 - 부산광역시를 중심으로 - (Study on Influencing Factors of Traffic Accidents in Urban Tunnel Using Quantification Theory (In Busan Metropolitan City))

  • 임창식;최양원
    • 대한토목학회논문집
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    • 제35권1호
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    • pp.173-185
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    • 2015
  • 본 연구는 통계적 분석기법을 통하여 부산시내에서 운영 중인 11개 터널에서 발생한 교통사고 456건을 대상으로 교통사고의 발생특성, 유형화 및 예측모델을 구축하였는바 다음과 같은 결론을 얻게 되었다. 교통사고 발생특성으로는 시간대별 터널 내 교통사고 08~18시 사이가 전체의 64.9%를 차지하고 있어 기존 도로의 45.8~46.1%에 비해 높게 나타났고, 사고유형별로는 차대차 사고가 대부분을 차지하고 있으며, 차량단독사고는 기존도로에 비해 다소 높게 나타났으며, 연령층별로는 21~40세의 구성비가 높았고, 제1당사자 차종별로는 화물차의 비중이 높았고, 운량별로는 맑은 날을 제외하고 비가 오는 날이 흐린 날 보다 더욱 높은 수치를 보였다. 교통사고 영향요인에 대하여 주성분분석을 실시한 결과, 제1주성분은 도로, 터널구조 및 교통류 관련요인이, 제2주성분은 조명시설 및 도로구조 관련요인이, 제3주성분은 대기상태 및 조명시설 관련요인이, 제4주성분은 인적 및 시계열 관련요인이, 제5주성분은 인적요인이, 제6주성분은 차량적 요인과 교통류 관련 요인이, 제7주성분은 기상요인으로 대별되었다. 교통사고 발생지점에 대하여 유형화를 실시한 결과, 최적 집단수는 5개로 구분지어 졌으며, 집단별로 수량화이론 1류를 적용하여 분석한 결과, 제1집단은 예측모델의 설명력이 낮은 반면 제4집단은 예측모델의 설명력이 중간정도, 제2, 제3, 제5집단은 높은 설명력을 가진 예측모델이 구축되었다. 예측모델의 편상관계수 절대 값이 0.2(약한 상관) 이상인 항목(주성분) 중에서 도로환경적 요인이 포함된 변수를 체크하여 분석한 결과, 주요 검토항목은 적절한 교통류 처리, 횡단구성(차로폭), 터널구조(터널길이), 도로선형, 환기시설, 조명시설로 요약되었다.

중형 차량의 외부 유동특성에 관한 연구 (Investigation of Aerodynamic Characteristics of a Medium-Size Vehicle)

  • 이동렬
    • 동력기계공학회지
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    • 제10권2호
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    • pp.22-28
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    • 2006
  • Computer simulation of the air flow over an automotive vehicle is now becoming a routine process in automotive industry to assess the aerodynamic characteristics of a medium-size vehicle such as $C_d\;and\;C_1$ and aslo to investigate the possibility of improving aerodynamic performance of the vehicle as a preliminary design for the production line. Mainly due to its contribution in saving time and cost in the development of new cars, computer simulation of the air flow over a vehicle is usually done well before a production car is introduced to the market and in gaining more and more attention as powerful computer resources are getting readily available nowadays. To aerodynamically design a car is mainly related with reducing a drag coefficient of car. A well designed car usually has a $C_d$ value in the range of $0.3{\sim}0.4$. It is understandable that automotive industry is rushing to reduce a drag coefficient as reducing even a small fraction of the $C_d$ value can have an enormous overall impact on many areas. Actually, the present research model was able to achieve a $C_d$ value in the range of $0.3{\sim}0.36$ for flow velocities of $60km/h{\sim}100km/h$ by strategically removing the possible factor hazardous to lower $C_d$ value. Prediction of the medium-size vehicle aerodynamics using CFD was performed when an actual car model was in the development stage and three-dimensional modeling was also performed to optimize it as the best model in terms of the best aerodynamic performance.

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고속전철 진단시스템을 위한 동력차 시뮬레이터 개발에 관한 연구 (A study on the development of the power car simulator for the high speed train diagnosis systems)

  • 김동우;김진환;허욱열
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1997년도 추계학술대회 논문집 학회본부
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    • pp.623-625
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    • 1997
  • This paper deals with the simulator for the diagnosis systems of high speed train. The purpose of this simulator is the verification of diagnosis systems. In this paper, the configuration of high speed train is investigated and the implementation model of power car is proposed. According to the model, mathematical equation is constructed. Dynamic simulation is executed and analyzed.

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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.