• Title/Summary/Keyword: 주행안전 시스템

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자율주행자동차 개발 동향

  • Kim, Yong-Hun;Kim, Hyeon-Gu
    • Information and Communications Magazine
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    • v.34 no.5
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    • pp.10-18
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    • 2017
  • 본고에서는 자율주행 완성차와 자율주행 융합 부품 관련 기술과 국내외의 자율주행자동차 산업정책과 기술 개발 동향을 살펴본다. 자율주행 차량은 고안전, 고편의, 친환경, 신생태계의 자동차 산업에서의 4가지 미래 키워드를 만족시키는 기술로서 국가차원의 전략적 양성이 필요하다. 자율주행자동차 산업은 자동차 산업 생산기반 및 우리나라의 IT, 반도체 등의 기술 활용이 가능하며, 아직 상용화 되지 않은 분야로서 자율주행 분야의 상용화 기술 조기 확보 시 세계시장을 선점 할 수 있다. 따라서 자율주행 완성차 및 부품업체 등의 복수 수요기관이 참여하여 중소, 중견 부품업체 수요처 다각화 및 생태계 체질 개선, 자율주행 핵심부품 및 제어를 위한 SW 등 원천기술 확보 및 수입대체, 자율주행 기술과 관련 센서 선도기술 개발 및 글로벌 중견기업 육성을 기대 할 수 있다. 또한 빠르게 자율주행자동차 관련 기술개발이 진행되고 전장 부품이 자동차에서 차지하는 비중이 커짐에 따라 서로 연결되어 동작하는 전기전자 시스템의 기능안전 확보의 필요성이 대두되고 있다. 이미 해외에서는 자동차 전자제어 시스템 의무 장착을 강화시키는 추세이며 차량 안전 확보를 위해 전자제어장치의 기능 안정성의 중요성과 기술 표준의 필요성을 기반으로 자동차 기능 안전선 국제 표준을 규격화하고 있다. 따라서 본고에서는 국내외의 자율주행차량 분야의 산업 현황과 기술 동향을 살펴봄으로써 시장의 현황을 파악하고 자동차 기능 안전성 국제 표준에 관하여 알아본다.

A Study on the Field Management System for Traffic Safety Facilities in IoT Infrastructure (IoT 기반 교통안전시설 현장관리 체계 연구)

  • WON, Sang-Yeon;LEE, Jun-Hyuk;JEON, Young-Jae;KIM, Jin-Tae
    • Journal of the Korean Association of Geographic Information Studies
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    • v.25 no.1
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    • pp.1-15
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    • 2022
  • In order to trust and use autonomous vehicles, safe driving on the road must be guaranteed. For this, the first infrastructure to be equipped with autonomous driving is traffic safety facility. On the other hand, autonomous vehicles(Level 3) and general vehicles are driving on the road, it is necessary to additionally manage existing general traffic safety facilities. In this study, a field management system for traffic safety facilities based on autonomous driving infrastructure was studied, and a pilot field management system was implemented in the demonstration area(Pangyo). The pilot system consists of a GNSS(Global Navigation Satellite System) receiver, a field management equipment, and a field management app. As a result of field demonstration,, it was confirmed that traffic safety facility information was easily transmitted and received even in downtown areas and that could be efficiently operated and managed. It is expected that the results of this study will be used as reference materials for the spread of autonomous driving infrastructure to local governments and infrastructure construction in the future.

VENTOS Simulation for Platoon Driving Considering ISO/PAS 21448 Standard (ISO/PAS 21448 표준을 고려한 군집주행의 VENTOS 시뮬레이션)

  • Kim, Youngjae;Kwon, YongGyun;Kim, Dong Hwan;Hong, Jang-Eui
    • Proceedings of the Korea Information Processing Society Conference
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    • 2020.11a
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    • pp.698-701
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    • 2020
  • 여러 대의 자율주행 차량이 하나의 그룹을 형성하여 주행하는 군집주행은 미래 고속도로 교통 시스템의 핵심 기술이다. 이러한 군집주행에서 발생할 수 있는 다양한 상황에서의 안전을 고려하는 일은 단독 자율 주행에서의 경우보다 더 어렵다. 다양한 군집주행의 안전 위협 요인 중, 의도하지 않은 동작으로부터 자율주행 차량의 안전성을 향상하는 방법을 가이드하기 위하여 새로운 표준 ISO/PAS 21448이 제정되었다. 본 논문에서는 ISO/PAS 21448 표준이 다루는 시나리오를 통해 군집주행에서 발생할 수 있는 의도하지 않은 상황의 극복을 위한 방법을 제시하였다. 특히 군집주행 시뮬레이터인 VENTOS를 이용하여 본 논문에서 제시하는 방법이 안전한 군집주행이라는 목표를 달성할 수 있음을 확인하였다.

Analysis of the Influence of Road·Traffic Conditions and Weather on the Take-over of a Conditional Autonomous Vehicle (도로·교통 조건 및 기상 상황이 부분 자율주행자동차의 제어권전환에 미치는 영향 분석)

  • Park, Sungho;Yun, YongWon;Ko, Hangeom;Jeong, Harim;Yun, Ilsoo
    • The Journal of The Korea Institute of Intelligent Transport Systems
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    • v.19 no.6
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    • pp.235-249
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    • 2020
  • The Ministry of Land, Infrastructure and Transport established safety standards for Level 3 autonomous vehicles for the first time in the world in December 2019, and specified the safety standards for conditional autonomous driving systems. Accordingly, it is necessary to analyze the influence of various driving environments on take-over. In this study, using a driving simulator, we investigated how traffic conditions and weather conditions affect take-over time and stabilization time. The experimental procedure was conducted in the order of preliminary training, practice driving, and test driving, and the test driving was conducted by dividing into a traffic density and geometry experiment and a weather environment experiment. As a result of the experiment, it was analyzed that the traffic volume and weather environment did not affect the take-over time and take-over stabilization time, and only the curve radius affects take-over stabilization time.

Development of a Multi-disciplinary Video Identification System for Autonomous Driving (자율주행을 위한 융복합 영상 식별 시스템 개발)

  • Sung-Youn Cho;Jeong-Joon Kim
    • The Journal of the Institute of Internet, Broadcasting and Communication
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    • v.24 no.1
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    • pp.65-74
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    • 2024
  • In recent years, image processing technology has played a critical role in the field of autonomous driving. Among them, image recognition technology is essential for the safety and performance of autonomous vehicles. Therefore, this paper aims to develop a hybrid image recognition system to enhance the safety and performance of autonomous vehicles. In this paper, various image recognition technologies are utilized to construct a system that recognizes and tracks objects in the vehicle's surroundings. Machine learning and deep learning algorithms are employed for this purpose, and objects are identified and classified in real-time through image processing and analysis. Furthermore, this study aims to fuse image processing technology with vehicle control systems to improve the safety and performance of autonomous vehicles. To achieve this, the identified object's information is transmitted to the vehicle control system to enable appropriate autonomous driving responses. The developed hybrid image recognition system in this paper is expected to significantly improve the safety and performance of autonomous vehicles. This is expected to accelerate the commercialization of autonomous vehicles.

Study on the Development of Methodology for Evaluation of Driving Safety of Automated Vehicles on Real Roads (실도로 기반 자율주행자동차 주행안전성 평가 방법론 개발 연구)

  • Lee, Youngtaek;Kim, Yejin;Jeong, Harim;Yoo, Hosik;Yun, Ilsoo
    • The Journal of The Korea Institute of Intelligent Transport Systems
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    • v.20 no.6
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    • pp.280-298
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    • 2021
  • As the development automated vehicles(AV) actively progresses around the world, the demand for a reasonable and systematic evaluation method for AVs is increasing. Research on scenarios, evaluation procedures, and methods for evaluating AVs conducted in simulations and proving ground(PG) is actively conducted internationally. In contrast, methods and procedures for evaluations on real roads are still in their infancy internationally. Therefore, it is necessary to conduct research on evaluating AVs on real roads in preparation for future use of AVs. This study aims to define the basic direction for evaluating the driving safety of AVs on real roads. To this end, the evaluation direction and process of AVs were presented on the real roads, and qualitative and quantitative evaluation indicators were selected to evaluate driving safety. A total of 38 items were selected based on the Road Traffic Act as qualitative evaluation items for evaluating the driving safety of AVs on real roads.

A Study on the Autonomous Driving System Using Infant Motor Vehicle (유아전동차를 활용한 자율주행 시스템에 관한 연구)

  • Gyeong-Jin Kang;Il-Yong Chun
    • Proceedings of the Korea Information Processing Society Conference
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    • 2023.11a
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    • pp.1139-1140
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    • 2023
  • 자율주행 시스템이 발전됨에 따라 더욱 효율적이고 안전성이 있는 실시간 제어와 알고리즘이 요구된다. 이러한 맥락에서, 본 논문은 유아용 전동차를 이용하여 다양한 상황 속 자율적이고 정교한 제어를 제시한다. 여러 센서에서 받아오는 정보를 가공하여 다음 행동에 대한 신호를 실시간으로 생성하여 안전하고 부드러운 자율주행 시스템 방법을 탐구한다.

A Study on The Dangers and Their Countermeasures of Autonomous Vehicle (자율주행자동차 위험 및 대응방안에 대한 고찰)

  • Jung, Im Y.
    • The Journal of the Korea Contents Association
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    • v.20 no.6
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    • pp.90-98
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    • 2020
  • Modern vehicles are evolving from manual to automatic driving. As the ratio of electrical equipment and software increases inside the vehicle, vehicles that support autonomous driving are becoming another open computer system that can communicate with the outside. The safety of the vehicle means the safety of both the passenger and the non-passenger. It is not clear whether the safety problem of ultimate autonomous vehicles can be solved by the current solution of computer systems related to fault tolerance and security. Autonomous vehicles should not be dangerous to people after they are released to the market, so it is necessary to proactively diagnose all the risks that can be predicted with current technology. This paper examines the current developments of autonomous vehicles and analyzes their dangers that threaten driving safety, as well as their countermeasures.

Safe Driving Evaluation System based on Drivers' Behaviors (운전 행동정보 기반 안전운전 평가시스템)

  • Yoon, Daesub;Hwang, Yoonsook;Kim, Hyunsuk;Kim, Kyungho
    • Proceedings of the Korea Information Processing Society Conference
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    • 2010.04a
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    • pp.1115-1117
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    • 2010
  • 안전운전 지원 시스템 개발을 위해서 고려되어야 할 요소는 차량정보, 운전자정보, 외부 환경정보가 있다. 기존의 안전운전 지원 시스템 개발은 주로 차량의 종방향 제어, 횡방향 제어, 조향각 제어 등 차량으로부터 직접 추출한 주행정보를 이용하여 운전자의 안전유무를 평가하였다. 그러나 최근의 조사결과에 따르면 교통사고의 90%이상이 운전자 실수에 의해서 발생한다는 것을 알 수 있다. 이와 관련하여 차량의 주행 정보뿐만 아니라 실제 운전자가 주행 중에 행하게 되는 행동정보기반의 안전운전지원시스템 개발이 활발히 연구되어 지고 있다. 본 논문에서는 운전자의 행동정보를 이용한 안전운전 평가시스템의 설계 개념과 안전운전 평가시스템의 핵심 요소인 표준모델 구축 방법에 대해서 논의하고자 한다.

Autonomous Navigation Power Wheelchair Using Distance Measurement Sensors and Fuzzy Control (거리측정 센서 스캐닝과 퍼지 제어를 이용한 전동 휠체어 자율주행 시스템)

  • Kim, Kuk-Se;Yang, Sang-Gi;Rasheed, M. Tahir;Ahn, Seong-Soo;Lee, Joon
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2008.05a
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    • pp.329-336
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    • 2008
  • Nowadays with advancement in technology and aging society, the number of disabled citizens is increasing. The disabled citizens always need a caretaker for daily life routines especially for mobility. In future, the need is considered to increase more. To reduce the burden from the disabled, various devices for healthcare are introduced using computer technology. The power wheelchair is an important and convenient mobility device. The demand of power wheelchair is increasing for assistance in mobility. In this paper we proposed a robotic wheelchair for mobility aid to reduce the burden from the disabled. The main issue in an autonomous wheelchair is the automatic detection and avoidance of obstacles and going to the pre-designated place. The proposed algorithm detects the obstacles and avoids them to drive the wheelchair to the desired place safely. By this way, the disabled will not always have to worry about paying deep attention to the surroundings and his path.

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