• 제목/요약/키워드: Right-Hand Side Driving

검색결과 5건 처리시간 0.019초

도로주행방향 변화에 따른 운전 특성 및 주관적 부하의 운전 시뮬레이터 기반 비교 평가 (Comparison on the Driver Characteristics and Subjective Workload according to the Road Direction Change using Driving Simulator)

  • 전용욱;대문수;천도굉상;권규식
    • 산업경영시스템학회지
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    • 제32권1호
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    • pp.26-33
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    • 2009
  • The directions of the road are divided into two, the right-hand side and left-hand side of the road, by the convention and specific native method in the world. This paper deals with the characteristics and behaviors of drivers who are accustomed to driving on right-hand side of the road, drive with a handle on the left-hand side, and comparing with left-hand side drivers. The driver's eye movements were measured by eye camera and questionnaires were used for measuring subjective evaluation such as driving mental workload. The experimental results indicated even if the experts who had much experience on right-hand side driving, they had lower driving skill than novice driver, accustomed to driving on left-hand side. In terms of mental workload, MCH rating scale and MNASA-TLX, the right-hand side drivers were in lower stress condition than the left-hand side drivers because of having much driving experience. However, they conducted a few mistakes by confusing the position of turn signal and windshield wiper because of their driving habit or traits and it lead to operation mistakes. These results can be applied effectively to develop the driving support information with changed environments.

도로 주행환경 변화와 핸들종류에 따른 운전자 부하 및 행동특성 (Driver Characteristics and Workload according to Changing Driving Environment and Types of Steering Wheel)

  • 전용욱;대문수
    • 대한인간공학회지
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    • 제28권2호
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    • pp.9-16
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    • 2009
  • The aim of this study was to evaluate the effects of the driving performance and workload according to changing driving environment and types of steering wheel. Twelve drivers who participated in this study consisted of two groups; six Japanese as the left-lane drivers who was accustomed to driving on left-hand side of the road, and six Europeans, Americans, and Korean as the right-lane drivers who was accustomed to driving on right-hand side of the road. They were asked to operate a driving simulator while using two different types of steering wheel (for the left-hand side driving and the right-hand side driving). During the experiment, a range of data were measured including driving performance, mental workload, and eye movements which were recorded in order to identify the amount of time looking towards the in-vehicle route guidance. Results indicated that the use of the steering wheel by parallel moving led to increase high attentional demand and worse glance behavior to traffic signs for the left-lane drivers. In the case of the right-lane drivers, the effects by changing driving direction were more effective than the types of steering wheel due to their habit or traits.

편향하중 조건 보행시 인체의 적응 작용에 대한 분석 (Joint moments and muscle forces during walking with sided load as one of activities of daily living)

  • 김현동;손종상;김한성;김영호;임도형
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2008년도 추계학술대회A
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    • pp.1709-1712
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    • 2008
  • The trunk is inclined to the loaded side when carrying an object as one of activities of daily living. As the reaction to this behavior the human body may be inclined to his/her trunk to unloaded side. The present study investigated the biomechanical effects of weight variation for sided load carriage during walking upon joint moments and muscle torques, through the tracker agent and joint driving dynamic analysis. To perform the experiment one male was selected as subject for the study. Gait analysis was performed by using a 3D motion analysis system. Thirty nine 14mm reflective markers, according to the plug-in marker set, were attached to the subject. We used BRG.LifeMOD(Biomechanics Research Group, Inc., USA), for skeletal modeling and inverse and joint driving dynamic simulation during one gait cycle. In walking with a sided load carriage, the subject modeled held the carriage with the right hand, which weighed 0, 5, 10, 15kg, 20kg respectively. The result of this simulation showed that knee and hip in the coronal plane were inclined to the loaded side and loaded side had larger moments as the sided load carriage was increased. On the other hand thoracic and lumbar in the coronal plane had larger negative values as the sided loaded carriage was increased. The thoracic and lumbar in the transverse plane also had larger values as the sided load was increased. And the several muscles of loaded side were increased as increasing sided load. It could be concluded that human body is adopted to side loaded circumstances by showing more biologic force. These results could be very useful in analysis for delivery motion of daily life.

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우측핸들차량 운전자의 잠재적 위험성 분석연구 (Analytical Study on the Potential Risks from Right-Handled Vehicle Drivers)

  • 박준태;김정현;강영균;김장욱
    • 대한교통학회지
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    • 제30권2호
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    • pp.67-78
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    • 2012
  • 현재 우리나라는 도로교통법에서 도로의 우측통행을 법률로 규정하고, 이에 적합한 운전석의 위치는 좌측 체계를 관례적으로 유지하고 있다. 그러나 최근 우측 핸들차량이 외국(특히 일본)에서 다양한 절차를 통해 수입되어 2004년 7월 자료에 의하면 이사화물 차량 1,343대와 외교관 차량 593대 등 2,000대 이상이 운행되고 있는 실정이다. 이러한 수입된 우측 핸들 차량은 국내의 우측 방향 운행체계에 적합하지 않아 잠재적으로 사고의 위험성을 내포하고 있다. 실험을 통하여 우측 핸들차량에 익숙하지 않은 운전자들은 방향지시등의 조작시간이 길어지고 에러횟수가 많아진다는 것을 볼 수 있었는데, 이는 교통사고에 큰 영향을 줄 수 있는 요인이다. 또한 추월시 발생하는 시거확보의 문제에 대한 실험의 결과, 운전석으로부터 10m 뒤에 위치한 종이컵을 보는 실험결과 좌측 핸들 차량의 시야 범위는 2.95m, 우측 핸들 차량의 시야 범위는 1.7m로 분석되었다. 우측 핸들차량에 대한 안전교육을 실시하고 기준에 준하는 운전자에게 운행할 수 있는 자격을 부여하며, 법 규정에 이와 관련된 기준 마련 등을 통하여 우측 핸들차량에 대한 안전대책을 수립할 수 있는 방안 모색이 필요하다.

DEVELOPMENT OF A PERSIMMON HARVESTING SYSTEM

  • Kim, S. M.;Park, S. J.;Kim, C. S.;Kim, M. H.;Lee, C. H.;J. Y. Rhee
    • 한국농업기계학회:학술대회논문집
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    • 한국농업기계학회 2000년도 THE THIRD INTERNATIONAL CONFERENCE ON AGRICULTURAL MACHINERY ENGINEERING. V.II
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    • pp.472-479
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    • 2000
  • A persimmon harvesting vehicle that can be operated in hilly orchards as well as a manipulator that can be used to harvest persimmons located in remote positions in the trees were designed and developed. The vehicle could be operated with keeping balanced position in an inclined field and its working platform could be moved up and down easy to approach fruits in a remote region with the aids of a hydraulic and a electrical and electronics systems. The weight of the vehicle was 927 kg and the center of gravity was located at 427 mm to the inner side from the center of a right driving caterpillar, 607 mm to a rear axle from the center of a front axle, and 562 mm to upward from ground. The automatic level control sensor for leveling the working platform was activated within 14.5 ∼ 16.5 degrees of slope variation. The total length of the manipulator was 1.39 m and weight is 975 g. It was powered by a 12 V geared motor to detach persimmon fruits with a rotational force. The gripper was made of plastic and rubber to increase a frictional force. In a performance evaluation test, static tipping angle, dynamic tipping angle toward front side when the vehicle was moving downward, climbing angle, driving speed of the vehicle were measured or calculated. In persimmon harvesting tests 24.9% of yield was increased by hand picking with the aid of the vehicle and additional 7% of yield were increased when the manipulator was used. Therefore, 99010 of total possible yield was achievable when both of the vehicle and the manipulator were used for the manual persimmon harvesting. Increase in 22.5% of total yield was achieved with the manipulator only.

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