• 제목/요약/키워드: On-road driving

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경사가 포함된 도로의 주행시 실제 주행연비 예측 (Estimation of Real Driving Fuel Consumption Rate of a Vehicle When Driving on Road Including Grade)

  • 박진호;박영일;이장무
    • 한국자동차공학회논문집
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    • 제8권3호
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    • pp.65-76
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    • 2000
  • To measure the fuel consumption rate of a vehicle, a car is tested on chassis dynamometer following given driving mode. But the fuel consumption rate measured by this method may be somewhat different from that measured in on-road driving conditions. It may be due to not considering road grade in driving modes. In this study, new driving modes which include road grade are proposed, and the simulation program to estimate the real driving fuel consumption rate of a vehicle is developed. On-road car tests to verify the simulation program are carried out and the results of the simulation are analysed and compared with those of the experiments.

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가상주행과 실차주행의 운전자 주행행태 차이에 관한 연구 (A Study on the Compensation of the Difference of Driving Behavior between the Driving Vehicle and Driving Simulator)

  • 박진호;임준범;주성갑;이수범
    • 한국도로학회논문집
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    • 제17권2호
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    • pp.107-122
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    • 2015
  • PURPOSES : The use of virtual driving tests to determine actual road driving behavior is increasing. However, the results indicate a gap between real and virtual driving under same road conditions road based on ergonomic factors, such as anxiety and speed. In the future, the use of virtual driving tests is expected to increase. For this reason, the purpose of this study is to analyze the gap between real and virtual driving on same road conditions and to use a calibration formula to allow for higher reliability of virtual driving tests. METHODS : An intelligent driving recorder was used to capture real driving. A driving simulator was used to record virtual driving. Additionally, a virtual driving map was made with the UC-Win/Road software. We gathered data including geometric structure information, driving information, driver information, and road operation information for real driving and virtual driving on the same road conditions. In this study we investigated a range of gaps, driving speeds, and lateral positions, and introduced a calibration formula to the virtual record to achieve the same record as the real driving situation by applying the effects of the main causes of discrepancy between the two (driving speed and lateral position) using a linear regression model. RESULTS: In the virtual driving test, driving speed and lateral position were determined to be higher and bigger than in the real Driving test, respectively. Additionally, the virtual driving test reduces the concentration, anxiety, and reality when compared to the real driving test. The formula includes four variables to produce the calibration: tangent driving speed, curve driving speed, tangent lateral position, and curve lateral position. However, the tangent lateral position was excluded because it was not statistically significant. CONCLUSIONS: The results of analyzing the formula from MPB (mean prediction bias), MAD (mean absolute deviation) is after applying the formula to the virtual driving test, similar to the real driving test so that the formula works. Because this study was conducted on a national, two-way road, the road speed limit was 80 km/h, and the lane width was 3.0-3.5 m. It works in the same condition road restrictively.

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.

운전행동 결정요인과 위험운전 행동요인이 난폭운전과 보복운전에 미치는 메커니즘 분석을 통한 대책마련 연구: 교통법규위반자 및 교통사고야기자를 대상으로 (A Study on Preparing Measures for Reducing Aggressive Driving and Road Rage by Analysing Mechanism of How the Driving Behavior Determinants and Dangerous Driving Behavior Factors Affect Aggressive Driving and Road Rage: Targeting Traffic Law Violator and Assaulter of a Traffic Accident)

  • 김수진;정철수;장석용
    • 대한교통학회지
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    • 제34권1호
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    • pp.15-28
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    • 2016
  • 본 연구는 최근 이슈가 되는 난폭운전과 보복운전의 발생 메커니즘을 운전행동 결정요인(대인분노와 공격성)과 위험운전 행동요인(난폭운전행동과 과속위험행동, 음주운전행동, 주의산만, 대처미숙)을 통해 분석하고, 예방 대책을 마련하는 것을 목표로 진행하였다. 본 연구의 결과를 정리하면, 첫째, 도로교통공단 7개 지부에서 교통법규 위반자와 교통사고 야기자 351명을 대상으로 실시한 설문결과를 통해 운전 중 난폭운전과 보복운전의 심각성과 맞춤형 교육의 형태, 적정 시간, 교육내용 등 요구사항을 파악할 수 있다. 둘째, 난폭운전과 보복운전에 운전행동 결정요인과 위험운전 행동요인의 세부 항목 관련성 유무와 메커니즘을 Figure 3과 Table 8을 통해 명확히 파악할 수 있다. 이를 통해, 난폭운전과 보복운전 대책의 우선순위와 가중치 등을 요인별, 항목별로 선정할 수 있다. 셋째, 난폭운전과 보복운전 메커니즘 분석모형을 통해 예방 대책을 Table 9 - Table 10과 같이 공통대책과 각 요인별 맞춤형 대책으로 구분하여 제시할 수 있었다.

Localization Requirements for Safe Road Driving of Autonomous Vehicles

  • Ahn, Sang-Hoon;Won, Jong-Hoon
    • Journal of Positioning, Navigation, and Timing
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    • 제11권4호
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    • pp.389-395
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    • 2022
  • In order to ensure reliability the high-level automated driving such as Advanced Driver Assistance System (ADAS) and universal robot taxi provided by autonomous driving systems, the operation with high integrity must be generated within the defined Operation Design Domain (ODD). For this, the position and posture accuracy requirements of autonomous driving systems based on the safety driving requirements for autonomous vehicles and domestic road geometry standard are necessarily demanded. This paper presents localization requirements for safe road driving of autonomous ground vehicles based on the requirements of the positioning system installed on autonomous vehicle systems, the domestic road geometry standard and the dimensions of the vehicle to be designed. Based on this, 4 Protection Levels (PLs) such as longitudinal, lateral, vertical PLs, and attitude PL are calculated. The calculated results reveal that the PLs are more strict to urban roads than highways. The defined requirements can be used as a basis for guaranteeing the minimum reliability of the designed autonomous driving system on roads.

RESEARCH ON MODULARIZED DESIGN AND PERFORMANCE ASSESSMENT BASED ON MULTI-DRIVER OFF-ROAD VEHICLE DRIVING-LINE

  • Yi, J.J.;Yu, B.;Hu, D.Q.;Li, C.G.
    • International Journal of Automotive Technology
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    • 제8권3호
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    • pp.375-382
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    • 2007
  • The multi-driver off-road vehicle drive-line consists of many components, with close connections among them. In order to design and analyze the drive-line efficiently, a modular methodology should be taken. The aim of a modular approach to the modeling of complex systems is to support behavior analysis and simulation in an iterative and thus complex engineering process, by using encapsulated submodels of components and of their interfaces. Multi-driver off-road vehicles are comparatively complicated. The driving-line is an important core part to the vehicle, it has a significant contribution to the performance. Multi-driver off-road vehicles have complex driving-lines, so performance is heavily dependent on the driving-line. A typical off-road vehicle's driving-line system consists of a torque converter, transmission, transfer case and driving-axles, which transfers the power generated by the engine and distributes it effectively to the driving wheels according to the road condition. According to its main function, this paper proposes a modularized approach for design and evaluation of the vehicle's driving-line. It can be used to effectively estimate the performance of the driving-line during the concept design stage. Through an appropriate analysis and assessment method, an optimal design can be reached. This method has been applied to practical vehicle design, it can improve the design efficiency and is convenient to assess and validate the performance of a vehicle, especially of multi-driver off-road vehicles.

도로 환경에서 자율주행을 위한 독립 관찰자 기반 주행 상황 인지 방법 (Independent Object based Situation Awareness for Autonomous Driving in On-Road Environment)

  • 노삼열;한우용
    • 제어로봇시스템학회논문지
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    • 제21권2호
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    • pp.87-94
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    • 2015
  • This paper proposes a situation awareness method based on data fusion and independent objects for autonomous driving in on-road environment. The proposed method, designed to achieve an accurate analysis of driving situations in on-road environment, executes preprocessing tasks that include coordinate transformations, data filtering, and data fusion and independent object based situation assessment to evaluate the collision risks of driving situations and calculate a desired velocity. The method was implemented in an open-source robot operating system called ROS and tested on a closed road with other vehicles. It performed successfully in several scenarios similar to a real road environment.

실도로 주행 데이터 기반 차선변경 주행 특성 분석 (Lane Change Driving Analysis based on Road Driving Data)

  • 박종철;채흥석;이경수
    • 자동차안전학회지
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    • 제10권1호
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    • pp.38-44
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    • 2018
  • This paper presents an analysis on driving safety in lane change situation based on road driving data. Autonomous driving is a global trend in vehicle industry. LKAS technologies are already applied in commercial vehicle and researches about lane change maneuver have been actively studied. In autonomous vehicle, not only safety control issue but also imitating human driving maneuver is important. Driving data analysis in lane change situation has been usually dealt with ego vehicle information such as longitudinal acceleration, yaw rate, and steering angle. For this reason, developing safety index according to surrounding vehicle information based on human driving data is needed. In this research, driving data is collected from perception module using LIDAR, radar and RT-GPS sensors. By analyzing human driving pattern in lane change maneuver, safety index that considers both ego vehicle and surrounding vehicle state by using relative velocity and longitudinal clearance has been designed.

도로 주행 능력을 향상시키기 위한 운전재활의 체계적 고찰 (Systematic Review of Driving Rehabilitation for Improving On-Road Driving)

  • 박진혁;허서윤;서준;박지혁
    • 재활치료과학
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    • 제5권2호
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    • pp.35-47
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    • 2016
  • 목적: 본 연구의 목적은 도로 주행 능력을 향상시키기 위한 운전재활의 방법과 효과에 대해 체계적 고찰을 통하여 추후에 있을 운전재활 연구의 방향을 제시하고자 한다. 연구방법: 2014년 12월부터 2015년 1월까지 운전재활에 관한 연구를 CINAHL, Embase, Pubmed, PsycINFO, Riss를 통하여 검색하였다. 선정기준에 따라 최종적으로 15편의 연구를 분석하였으며 주요검색용어로는 "On-road" OR "Driving" AND "Driving rehabilitation"AND "Intervention"을 사용하였다. 결과: 고찰한 연구는 총 15개로 근거 수준은 I, III, V이었다. 연구대상은 뇌졸중 환자(40.0%), 고령 운전자(20.0%), 외상성 뇌손상 환자(20.0%), 후천적 뇌손상 환자(13.3%), 척수환자(6.7%)였으며, 실제 도로 주행 능력을 향상시키기 위한 중재 방법은 시뮬레이터를 이용한 훈련(53.3%), 인지 기술을 훈련(26.6%), 운전을 위한 교육(6.7%), 보조 기기의 적용(6.7%), 운전 연수(6.7%)이었다. 중재 효과는 방법에 따라 차이가 있었지만 시뮬레이터를 이용한 모든 연구에서 중재 후 도로 주행 능력의 유의한 향상을 보고하였다. 결론: 도로 주행 능력을 향상시키기 위한 운전재활은 다양한 방법으로 적용되고 있었다. 특히 시뮬레이터를 이용한 중재는 많은 연구를 통해 효과가 입증되고 있었다. 추후 다양한 연구 대상자와 중재 방법을 통해 도로 주행 능력 향상을 위한 운전재활 연구가 지속적으로 이루어져야 할 것이다.

Comparisons of Traffic Collisions between Expressways and Rural Roads in Truck Drivers

  • Lee, Sangbok;Jeong, Byung Yong
    • Safety and Health at Work
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    • 제7권1호
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    • pp.38-42
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    • 2016
  • Background: Truck driving is known as one of the occupations with the highest accident rate. This study investigates the characteristics of traffic collisions according to road types (expressway and rural road). Methods: Classifying 267 accidents into expressway and rural road, we analyzed them based on driver characteristics (age, working experience, size of employment), time characteristics (day of accident, time, weather), and accident characteristics (accident causes, accident locations, accident types, driving conditions). Results: When we compared the accidents by road conditions, no differences were found between the driver characteristics. However, from the accident characteristics, the injured person distributions were different by the road conditions. In particular, driving while drowsy is shown to be highly related with the accident characteristics. Conclusion: This study can be used as a guideline and a base line to develop a plan of action to prevent traffic accidents. It can also help to prepare formal regulations about a truck driver's vehicle maintenance and driving attitude for a precaution on road accidents.