• 제목/요약/키워드: Driving Conditions

검색결과 1,302건 처리시간 0.037초

안전운전 관리시스템 개발 (Development of a Safe Driving Management System)

  • 조준희;이운성
    • 한국자동차공학회논문집
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    • 제15권1호
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    • pp.71-77
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    • 2007
  • Dangerous driving is a major cause of traffic accidents in Korea. It becomes more serious for commercial vehicles due to higher fatality rates. The Safe Driving Management System (SDMS), developed in this research, is a comprehensive solution that monitors and stores driving conditions of vehicles, detects dangerous driving situations, and analyzes the results in real time. The Safe Driving Management System consists of a vehicle movement information controller, a dangerous driving detection algorithm and a vehicle movement data report and analysis program. The dangerous driving detection algorithm detects and classifies dangerous driving conditions into representative cases such as sudden acceleration, sudden braking, sudden lane change, and sudden turning. Both computer simulation and vehicle test have been conducted to develop and verify the algorithm. The Safe Driving Management System has been implemented on commercial buses to verify its reliability and objectivity. It is expected that the system can contribute to prevention of traffic accidents, systemization of safe driving management and reduction of commercial vehicle operation costs.

모터 구동형 시트벨트 Retractor 개발 (Development of a Motorized Seatbelt Retractor)

  • 신윤수;김명동;박준형;김일환
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2006년 학술대회 논문집 정보 및 제어부문
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    • pp.336-338
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    • 2006
  • Motorized retractors enhance the safety of passengers by removing the slack of webbing and by holding upright driving position. Reliability of a driving mechanism that includes one-way clutch between the driving motor and webbing is directly linked to the safety of passenger. In this research, conditions for locking one-way clutch and also conditions for sustaining locking are theoretically investigated. the operation of a motorized retractor under realistic conditions is simulated in order to validate the proposed retractor design.

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PEMS를 이용한 소형 경유차의 실주행 NOx 배출특성 평가 (Estimation of Real-Driving NOx Emission Characteristics from Light-Duty Diesel Vehicles with PEMS)

  • 박연재;권상일;박준홍;이재영
    • 한국대기환경학회지
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    • 제31권6호
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    • pp.562-572
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    • 2015
  • $NO_x$ emissions from diesel vehicles have been regarded as a main cause of high $NO_2$ concentration in metropolitan area. Recent studies have shown that the on-road $NO_x$ emissions of diesel vehicles are quite higher than the emission limits specified with the pre-defined test method for emission certification. To reduce air pollutants effectively, the discrepancy of emissions in certification and real-driving conditions should be tackled. In this study, the real-driving emissions have been estimated with portable emission measurement system (PEMS). The results of this study have shown that the on-road $NO_x$ emissions from diesel vehicles have been decreased as the introduction of stricter emission regulation, EURO-6, but additional reduction should be still required and robust technologies should be applied to control $NO_x$ in real-driving conditions. RDE-LDV (Real Driving Emission - Light Duty Vehicles) test method being developed in the European Union can represent excessive on-road $NO_x$ emissions of diesel vehicles as applied emission technologies and can be a solution to remove discrepant $NO_x$ emissions between certification and Korean real-driving conditions. Among the $NO_x$ reduction technologies for EURO-6 diesel vehicles, selective catalytic reduction (SCR) system has shown the better performance than lean $NO_x$ trap (LNT) system to control on-road $NO_x$ emissions. Implementing RDE-LDV will require vehicle manufacturers to adopt the more effective $NO_x$ reduction technology in real driving conditions.

구동륜 슬립이 견인성능에 미치는 영향 (Effect of Slip on Tractive Performance of Driving Wheel)

  • 박원엽
    • 한국자동차공학회논문집
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    • 제10권1호
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    • pp.234-243
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    • 2002
  • When a vehicle is operated over sort terrain, torque(or soil thrust) applied to driving wheel brings about shear displacement far soil due to compression and shear failure of soil under tire. This shear displacement give rise to slip and a additional sinkage due to slip. This additional sinkage is usually referred to as slip-sinkage. The slip-sinkage is affected by soil conditions and inflation pressure of tire. This slip-sinkage influence tractive performance on driving wheel . We conducted the experimental study far investigating the effect of slip on sinkage and tractive performance of driving wheel, such as motion resistance, thrust and drawbar pull. The experiment was carried out over three different soil conditions(soft, hard and very hard soil) far a tire with three levels of inflation pressure(120kPa, 240kPa and 360kPa). The results of this study show qualitatively slipsinkage characteristics and slip-tractive performance relationships of driving wheel with soil conditions and inflation pressure of tire.

국지지역 도로 기반 시설에서 안전운전을 위한 경보 정보 설계 (Amber Information Design to Keep Safety-Driving Under Road Structure at Local-Scale Geographic)

  • 박종찬;홍규장
    • 전기학회논문지P
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    • 제58권1호
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    • pp.48-55
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    • 2009
  • In order to keep safe driving conditions under road networks, there are several formations such as road structure, road surface condition, traffic occupancy and supplement of an accurate information of traffic status ahead To support safe-driving on each road formation, each formation is supplied with various information to help the driver. However, in some cases like rapid status change at local-scale geography, traffic information systems often displays insufficient information because of the lack of information correlation. In order to accurately aware the driver, all road formation must be in sync. It is important to supply accurate information to the driver because this information directly impacts the drivers on the road. This paper discusses the amber information to keep the least safety driving over road formations including tunnels and bridges. This paper also will propose the informations for safe-driving conditions, information linkage on the road and rule-base safety information, as ITS technology, being displayed for all drivers under the worst weather conditions.

엔진 경사 조건이 오일 공급 시스템에 미치는 영향 (The Effect of Engine Tilting Conditions on the Oil Supply System)

  • 전문수;김숭기;박병완
    • 한국자동차공학회논문집
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    • 제12권3호
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    • pp.37-43
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    • 2004
  • Engine lubrication system is generally affected by vehicle driving conditions; acceleration, braking deceleration, and cornering. The oil supply system such as oil pan, baffle plate, and oil pick-up pipe should be optimized to cope with severe driving conditions. The main purpose of this paper is to understand the effect of the engine tilting angle on the oil supply system using engine tilting test rig. For the purpose, the oil pressure fluctuation and oil aeration in the main gallery are measured at various engine tilting angles. In addition, the oil flow is visualized by using transparent oil pan to investigate the cause of the formation of oil aeration. The test results show there is a strong correlation between the main gallery oil pressure fluctuation and oil aeration. It is also found that the visualization technique is helpful to stabilize the oil supply system at severe driving conditions.

직접구동 인 휠 모터를 장착한 1인승 전기자동차의 선회안정성제어 (Cornering Stability Control of a Personal Electric Vehicle with Direct-Drive In-Wheel Motors)

  • 남강현;엄상준
    • 제어로봇시스템학회논문지
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    • 제22권11호
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    • pp.919-924
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    • 2016
  • This paper proposes a robust control design method for improving the cornering stability of a personal electric vehicle equipped with in-wheel motors. In general, vehicles undergo severe parameter variations and unpredictable disturbances with respect to a wide range of driving conditions (e.g., road surface conditions and vehicle velocity conditions). For this reason, robust control design techniques are required to guarantee consistent driving performances and robustness against various driving conditions. In this paper, an adaptive sliding mode control method is employed to enhance cornering stability by controlling the direct-drive in-wheel motors independently. Additionally, in order to confirm the effectiveness of a proposed control method, real driving tests with an experimental personal electric vehicle are performed.

자동차 시뮬레이터에서의 급출발 및 급제동에 따른 운전자 감성 평가 (Evaluations on Driver's Sensibility Changes by Sudden Start and Sudden Stop Conditions in Driving Simulator)

  • 전효정;민병찬;성은정;김철중
    • 감성과학
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    • 제5권4호
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    • pp.51-57
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    • 2002
  • 자동차 시뮬레이터에서 운전 형태에 따른 감성을 평가하기 위하여 운전자의 심리생리적 반응을 측정하였다. 운전 형태는 정차, 정속주행(70km/h), 급출발(0km/h$\longrightarrow$70km/h)및 급제동(70km/h$\longrightarrow$0km/h)으로 하였다. 피험자는 운전경력이 1년 이상인 20대 남자 12명을 대상으로 Simulator Sickness 및 주관적 쾌적감과 각성감, 뇌파(Electroencep-halogram), 심전도(Electrocardiogram), 피부온도(Skin temperature), 피부전기저항(Galvanic skin response)을 측정하였다. 주관적, 생리적 평가는 각 주행조건에서 주행 전과 후에 실시하였다. 실험결과 정차 및 정속 주행보다 급출발 및 급제동 조건에서 쾌적감과 각성감은 높아졌다. 생리적으로는 정차 및 정속 주행보다 급출발 및 급제동 조건에서 중추신경 반응은 알파파가 감소하였고, 베타파는 증가하였다. 자율신경 반응은 심박율 및 피부전기저항의 증가, 피부온도의 저하로부터 교감신경이 활성화됨을 알 수 있었다. 이러한 결과로부터 운전 형태에 따라 심리 .생리적인 변화가 뚜렷하였고, 시뮬레이터를 이용한 동적 환경에서의 감성 평가가 가능하였다. 감성에 대한 개인간의 차이를 최소화하고 객관화된 감성을 도출하기 위해서는 앞으로 더 많은 대상자에 대한 측정 자료가 요구된다.

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완전 자율주행을 위한 도로 상태 기반 제동 강도 계산 시스템 (The Road condition-based Braking Strength Calculation System for a fully autonomous driving vehicle)

  • 손수락;정이나
    • 인터넷정보학회논문지
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    • 제23권2호
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    • pp.53-59
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    • 2022
  • 3단계 자율주행 차량 이후, 4, 5단계의 자율주행 기술은 차량의 완벽한 주행뿐만 아니라 탑승객의 상태를 최적으로 유지하기 위해 노력하고 있다. 그러나 현재 자율주행 기술은 LiDAR, 전방 카메라 등 시각적 정보에 과하게 의존하기 때문에 지정된 도로 이외의 도로에서 완벽하게 자율주행을 실행하기 힘들다. 따라서 본 논문은 차량이 시각 정보 외의 데이터를 사용하여 도로의 상태를 분류하고, 도로 상태와 주행 상태에 따라 최적의 제동 강도를 계산하는 BSCS (Braking Strength Calculation System)를 제안한다. 본 논문에서 제안하는 BSCS는 KNN 알고리즘을 기반으로 도로의 상태를 분류하는 RCDM (Road Condition Definition Module)과 RCDM의 결과와 현재 주행 상태를 통해 주행 중 최적의 제동 강도를 계산하는 BSCM (Braking Strength Calculation Module)로 구성된다. 본 논문의 실험 결과, KNN 알고리즘에 가장 적합한 K의 수를 찾을 수 있었고, 비지도 학습인 K-means 알고리즘보다 본 논문에서 제안한 RCDM이 더 정확한 것이 증명되었다. 해당 논문의 BSCS는 시각 정보뿐만 아니라 서스펜션에 가해지는 진동 데이터를 사용함으로써, 시각 정보가 제한되는 여러 환경에서 자율주행 차량의 제동을 더 원활하게 만들 수 있다.

Boundary Condition for Bare Chassis Brackets of the Commercial Vehicle

  • Yang, Seung Bok
    • International journal of advanced smart convergence
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    • 제11권1호
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    • pp.94-100
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    • 2022
  • It is common for commercial vehicles to make the top part according to the use after making the bear chassis, and to connect various devices with the bear chassis. Various brackets used in bear chassis for the development of all automobiles, including commercial vehicles, play a role of connecting the components required for driving and operating the car to the car body. In commercial vehicles, components necessary for operation are installed in the bear chassis; that is, the bear chassis of commercial vehicles is a space where the devices required for driving and operating the vehicle are installed. The devices required for the configuration of the vehicle are drive, brake, exhaust and steering, etc. These devices are basically connected to the body, the front axis, or the rear axis. The part interlinking the apparatuses required for the vehicle drive to the car body or axis is bracket. In this study, we analyzed the boundary conditions to evaluate the stability of the three brackets that connect the components of the car to the front axis of the new type of 30-seater bus in the development process. In order to analyze the boundary conditions, the boundary conditions according to the driving condition of the vehicle were classified. For stress analysis to evaluate the stability of brackets according to the driving state of the vehicle, it is reasonable to give the bracket a boundary condition of harsh conditions.