• 제목/요약/키워드: Lv.4 Autonomous vehicle

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Lv.4 자율주행자동차 보험제도 관련 법 개정 방안에 관한 연구 (A Study on the Amendment of the Act on the Lv.4 Autonomous Vehicle Insurance System)

  • 김규현;기승도;윤영한
    • 자동차안전학회지
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    • 제16권3호
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    • pp.95-100
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    • 2024
  • In this study, it was proposed to apply the existing driver liability and compulsory automobile insurance system applied to general cars and Level 3 automated vehicles in relation to the responsibility of autonomous driving, ensuring safety, and strengthening accident liability, and to establish a definition of an autonomous driving supervisor who remotely supports autonomous driving and to purchase liability insurance. In addition, in the case of an autonomous vehicle accident caused by the intentional or negligent act of the autonomous driving supervisor, an amendment was proposed to allow insurance companies to compensate for damages to the person legally liable for damages, and an amendment to define the autonomous driving supervision insured and add it as an insured.

Development of Radar-enabled AI Convergence Transportation Entities Detection System for Lv.4 Connected Autonomous Driving in Adverse Weather

  • Myoungho Oh;Mun-Yong Park;Kwang-Hyun Lim
    • International journal of advanced smart convergence
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    • 제12권4호
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    • pp.190-201
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    • 2023
  • Securing transportation safety infrastructure technology for Lv.4 connected autonomous driving is very important for the spread of autonomous vehicles, and the safe operation of level 4 autonomous vehicles in adverse weather has limitations due to the development of vehicle-only technology. We developed the radar-enabled AI convergence transportation entities detection system. This system is mounted on fixed and mobile supports on the road, and provides excellent autonomous driving situation recognition/determination results by converging transportation entities information collected from various monitoring sensors such as 60GHz radar and EO/IR based on artificial intelligence. By installing such a radar-enabled AI convergence transportation entities detection system on an autonomous road, it is possible to increase driving efficiency and ensure safety in adverse weather. To secure competitive technologies in the global market, the development of four key technologies such as ① AI-enabled transportation situation recognition/determination algorithm, ② 60GHz radar development technology, ③ multi-sensor data convergence technology, and ④ AI data framework technology is required.

자율주행자동차 상용화에 따른 자동차 안전 인증제도 개선에 관한 연구 (A Study on the Improvement of Motor Vehicles Safety Certification System According to the Deployment of Autonomous Vehicle)

  • 조용혁;안정아;이상현
    • 자동차안전학회지
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    • 제14권4호
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    • pp.106-112
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    • 2022
  • The purpose of this study is to explore ways of improving the motor vehicles safety certification system in preparation for the deployment of Lv.4 or higher autonomous vehicles. In order to effectively achieve the objectives of this study, theoretical and empirical research methodologies were employed, including literature review of prior research, government-published data, etc.; comparative research on legislative cases of other countries regarding motor vehicles safety certification; historical and legal research on domestic systems; legal analysis to explore approaches for improvement, etc. Some argue that the type approval system is needed in preparation for deploying autonomous vehicles, but there are several limitations in moving to the type approval system from the self-certification system currently adopted in Korea. First, there is a possibility that the system may be in conflict with the Korea-U.S. MOU regarding Foreign Motor Vehicles (1988) and the Korea-U.S. FTA (2011); second, there is a risk of undermining the cause of the self-certification system, which is the autonomy of manufacturers; third, the boundary between autonomous vehicles and non-autonomous vehicles is unclear; and fourth, the type approval system may hinder technological competitiveness. On the other hand, considering that the Korea-U.S. FTA and the UNECE IWVTA recognize exceptions to deal with road safety and risks to human health or the environment, and have a pre-certification system for some auto parts such as pressure-resistant containers, it can be said that there is room to introduce the type approval system for supplementation purposes. To improve the motor vehicles safety certification system while ensuring the safety of autonomous vehicles of Lv.4 or higher, the targets of type approval should be defined and the criteria, procedures, etc. for type approval should be established. At the same time, the consistency between motor vehicle-related laws and harmonization with international standards need to be considered.

고속도로 주행 시 선행차량의 전방 긴급 장애물 회피에 따른 Car-to-Car Cut-out 시나리오 기반 AES 성능평가 방법 연구 (A Study on AES Performance Assessment Protocol based on Car-to-car cut-out Scenario According to front Emergency Obstacle Avoidance of Preceding Vehicle during Highway Driving)

  • 김진석;이동훈
    • 자동차안전학회지
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    • 제14권4호
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    • pp.84-90
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    • 2022
  • With the popularization of autonomous driving technology, safety has emerged as a more important criterion. However, there are no assessment protocol or methods for AES (Autonomous Emergency Steering). So, this study proposes AES assessment protocol and scenario corresponding to collision avoidance Car-to-Car scenario of Euro NCAP in order to prepare for obstacles that appear after the emergency steering of LV (Leading Vehicle) avoiding obstacles in front of. Autoware-based autonomous driving stack is developed to test and simulate scenario in CARLA. Using developed stack, it is confirmed that obstacle avoidance is successfully performed in CARLA, and the AES performance of VUT (Vehicle Under Test) is evaluated by applying the proposed assessment protocol and scenario.

중국 자율주행차 테스트베드 관련 표준 분석을 통한 K-City 고도화 방안 수립에 관한 연구 (Study on the Development of K-City Roadmap through the Standard Analysis of the Test-Bed for Automated Vehicles in China)

  • 이상현;고한검;이현우;조성우;윤일수
    • 자동차안전학회지
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    • 제14권1호
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    • pp.6-13
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    • 2022
  • The Ministry of Land, Infrastructure and Transport (MoLIT) and the Korean Automobile Testing and Research Institute (KATRI) are supporting the development of Lv.3 automated vehicle (hereinafter, AV) technology by constructing an automated driving pilot city (as known as K-City) equipped with total 5 evaluation environments (urban, motorway, suburban, community road, and autonomous parking facility) which is a test bed exclusively for AV (2017~2018). An upgrade project is in a progress to materialize harsh environments such as bad weather (rain, fog, etc.) and reproduction of communication jamming (GPS blocking, etc.) with the purpose of supporting the development of Lv.4 connected & automated vehicle (hereinafter, CAV) technology (2019~2022). We intend to proactively establish a national level standard for CAV test-bed and test road requirements, test method, etc. for establishment of a road map for the construction of the test bed which is being promoted step by step and analyze and, when required, benchmark the case of China that has announced and is utilizing it. Through this, we plan to define standardized requirements (evaluation facility, evaluation system, etc.) on the test bed for the development of Lv.4/4+ CAV technology and utilize the same for the design and construction of a test bed, establishment of a road map for the construction of a real car-based test environment related to the support for autonomous driving service substantiation, etc. through provision of an evaluation environment utilizing K-City, and the establishment of a K-City upgrade strategies, etc.

KANO 모델을 활용한 V2H 커뮤니케이션 기술의 우선순위 분석 (Exploring the Key Priority of V2H Communication Technology Using the KANO Model)

  • 이상화;강수희;장정아
    • 자동차안전학회지
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    • 제14권4호
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    • pp.91-99
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    • 2022
  • In Korea, various studies on autonomous vehicles are being conducted with the aim of commercializing the fully autonomous driving (Lv.4) on major roads in 2027. Currently, the communication between non-autonomous vehicles and road users is made with gestures, eye contact, and verbal signals. In the case of autonomous vehicles in the future, autonomous vehicles should communicate instead of drivers. Recently, V2H communication technology (communication technology between autonomous vehicles and road users) is being developed. This study shows technology priorities using the KANO model in caution (warning) and traffic (concession) situations. As a result, a total of six attractive quality technologies were analyzed: technology to provide dark warning information in a display graphic; technology to provide dark warning information in a projection graphic; technology to provide light concession information in a display graphic; technology to provide dark concession information in a display graphic. In the future, it will investigate the preference of users in providing V2H information by road situation. It will be used as a V2H design priority.

Lv 4+ 자율주행 테스트 시나리오 개발을 위한 자율주행차량 위험 사례 분석: 인지 음영을 중심으로 (Analysis of Autonomous Vehicles Risk Cases for Developing Level 4+ Autonomous Driving Test Scenarios: Focusing on Perceptual Blind)

  • 오승민;최재희;장기태;윤진원
    • 한국ITS학회 논문지
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    • 제23권2호
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    • pp.173-188
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    • 2024
  • 자율주행차량(AV)의 기술 발전으로 실도로 내 자율주행이 가능해졌지만, 주변 요소로 AV의 인지 범위 또는 능력이 제한되는 인지 음영으로 완전한 자율주행에 어려움이 있다. 오늘날 Lv 4+ 자율주행 테스트 시나리오를 개발하기 위해서는 실제 도로에서 발생할 수 있는 다양한 인지 음영 상황을 파악하고 대비 전략을 구상하는 것이 중요하다. 따라서, 본 연구는 미국 캘리포니아 차량관리국(DMV)의 AV 사고 데이터를 통해 자율주행 모드 활성화 여부에 따라 AV와 일반차량의 사고 형태와 특성을 비교하고, AV 제어권 전환 데이터를 단계적으로 분류하여 인지 음영으로 인한 제어권 전환의 유형과 실제 사례를 도출하였다. 분석 결과, AV의 안전 운전 기동으로 일반 차량과 다른 사고 유형이 나타났으며, 3가지 유형의 인지 음영 사례를 파악하였다. 본 연구 결과는 Lv 4+ 자율주행 테스트 시나리오 개발의 중요한 기초자료가 될 것이며, 다양한 인지 음영이 고려된 테스트 시나리오를 통해 상황별 인지 음영을 해소하는 효율적인 전략을 마련할 수 있다. 이를 통해 실제 도로에서의 AV 주행 안전성을 효과적으로 평가하고 향상할 수 있을 것으로 기대된다.

델파이 기법을 적용한 자율주행시대 도로 설계 및 운영 변화 방향 연구 (A Study on the Changes of Road Design and Operation in the Age of Autonomous Driving, Using Delphi Technique)

  • 김보성;윤재용
    • 한국ITS학회 논문지
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    • 제23권3호
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    • pp.80-96
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    • 2024
  • 본 연구는 Lv.4/4+ 자율주행 시대에 도로 설계, 운영, 시스템의 변화 방향을 분석하기 위해 도로, 교통, 자동차, ITS, 통신 분야의 전문가들을 대상으로 2차에 걸쳐 델파이 조사를 수행하였다. 델파이 조사 항목을 구성하기 위해 기초 설문조사를 진행하였으며, 자율주행과 밀접한 관련이 있는 분야의 전문가 14명을 대상으로 1차, 2차 델파이 조사를 진행하였다. 조사 결과 미래에는 공유형 AV, 대중교통 환승 중심의 교통운영으로 변경될 것으로 예상되며, 이에 따른 횡단구성의 변경이 있을 것으로 보여진다. 자율주행전용차로는 고속도로, 일반국도부터 도입이 예상되며, 도로 가측부가 아닌 도로 중앙부에 설치되고 기존 도로와 동일한 차로폭을 사용할 것으로 의견이 모아졌다. 자율주행자동차를 위해 시설물 측면에서는 보차분리시설의 확충이 필요하며, 위치 인식을 위한 시설물에 통신칩 삽입, 정밀지도 고도화, 노변통신시설 확충 등이 필요한 것으로 나타났다.

MILS 기반 ADS 기능 검증을 위한 V2X 모델링에 관한 연구 (A Study on V2X Modeling for Virtual Testing of ADS Based on MIL Simulation)

  • 신성근;박종기;우창수;예창민;이혁기
    • 자동차안전학회지
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    • 제15권3호
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    • pp.34-42
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    • 2023
  • Simulation-based virtual testing is known to be a major requirement for verifying the safety of autonomous driving functions. However, in the simulation environment, there is a difficulty in that all driving environments related to the autonomous driving system must be realistically modeled. In particular, C-ITS (Cooperative-Intelligent Transport Systems) is essential for urban autonomous driving of Lv.4, but the approach to modeling for C-ITS service in the MILS (Model in the Loop Simulation) environment is not yet clear. Therefore, this paper aims to deal with V2X (Vehicle to Everything) modeling methods to effectively apply C-ITS-based autonomous cooperative driving services in the MILS environment. First, major C-ITS services and use cases for autonomous cooperative driving are analyzed, and a modeling method of V2X signals for C-ITS service simulation is proposed. Based on the modeled V2X messages, the validity of the proposed approach is reviewed through simulations on the C-ITS service use case.

자율주행시스템 운행지원을 위한 도로 인프라 측면의 위험 요소 관리 방안 (A Study on the Method for Managing Hazard Factors to Support Operation of Automated Driving Vehicles on Road Infrastructure)

  • 김규옥;최정민;조선아
    • 한국ITS학회 논문지
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    • 제21권2호
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    • pp.62-73
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    • 2022
  • 각국의 자율주행시스템 기술개발 경쟁이 심화함에 따라 정부도 자율주행시스템의 시장 진입을 전방위에서 지원하고 있다. SAE(Society of Automotive Engineers) 3단계 기술은 운전자가 위험 상황을 회피해야 하고, 4단계 기술은 자율주행시스템 스스로 위험 상황에 대응할 수 있어야 한다. 이에 따라, 공공부문은 도로 위험 상황을 모니터링하고, 도로 인프라 정보를 운전자와 자율주행시스템에 제공하여 대응할 수 있도록 지원할 필요가 있다. 본 연구는 도로 인프라 위험 요소를 자율주행시스템의 ODD(Operational Design Domain) 특성에 따라 모니터링 대상별 위험 요소를 세분화하고, 각 위험 요소가 차량에 미칠 영향에 따른 위험도 등급화 및 평가 방안을 제시하였다. 위험 상황 발생 시 자율주행차의 운행 특성을 시뮬레이션하고, 위험 요인 특성과 물리적인 차량 조건 사이의 영향 관계를 파악하여 등급화함으로써 위험도를 평가할 수 있다. 또한 수집된 모니터링 정보는 관리 센터와 공유하고, 요소별 특성에 따른 노드 혹은 링크 형태로 정밀지도에 표출하여 위치정보와 위험도 등급 등 종합적 관리가 가능한 모니터링 체계를 정립할 것을 제안하였다.