DOI QR코드

DOI QR Code

도심 정체 상황에서의 자율주행 차선 변경 알고리즘 개발 및 평가를 위한 실도로 데이터 기반 시뮬레이션 환경 개발

Human Driving Data Based Simulation Tool to Develop and Evaluate Automated Driving Systems' Lane Change Algorithm in Urban Congested Traffic

  • 서다빈 (서울대학교 기계공학과) ;
  • 채흥석 (서울대학교 기계공학과) ;
  • 이경수 (서울대학교 기계공학과)
  • 투고 : 2021.10.04
  • 심사 : 2023.06.20
  • 발행 : 2023.06.30

초록

This paper presents a simulation tool for developing and evaluating automated driving systems' lane change algorithm in urban congested traffic. The behavior of surrounding vehicles was modeled based on driver driving data measured in urban congested traffic. Surrounding vehicles are divided into aggressive vehicles and non-aggressive vehicles. The degree of aggressiveness is determined according to the lateral position to initiate interaction with the vehicle in the next lane. In addition, the desired velocity and desired time gap of each vehicle are all randomly assigned. The simulation was conducted by reflecting the cognitive limitations and control performance of the autonomous vehicle. It was possible to confirm the change in the lane change performance according to the variation of the lane change decision algorithm.

키워드

과제정보

본 연구는 국토교통부 도심도로 자율협력주행 안전·인프라 연구 사업의 연구비지원(과제번호 19PQOW-B152473-01)에 의해 수행되었습니다.

참고문헌

  1. Trucks, VolVo., 2013, "European accident research and safety report 2mi3", Volvo Trucks, Gothenburg, Sweden, Tech. Rep.
  2. Eskandarian, A., 2012, "Handbook of intelligent vehicles", Springer.
  3. Lee, S. and Seo, S., 2017, "A Learning-Based Framework for Handling Dilemmas in Urban Automated Driving", 2017 IEEE International Conference on Robotics and Automation, May 29 - June 3.
  4. C. Hatipoglu, U. Ozguner and K. A. Redmill, 2003, "Automated lane change controller design", IEEE transactions on intelligent transportation systems, Vol. 4, No. 1, pp. 13~22. https://doi.org/10.1109/TITS.2003.811644
  5. M. P. Vitus and C. J. Tomlin, 2013, "A probabilistic approach to planning and control in autonomous urban driving", in 52nd IEEE Conference on Decision and Control, pp. 2459~2464, IEEE.
  6. S. Ulbrich and M. Maurer, 2013, "Probabilistic online POMDP decision making for lane changes in fully automated driving", in 16th International IEEE Conference on Intelligent Transportation Systems (ITSC 2013), pp. 2063~2067, IEEE.
  7. G. Schildbach and F. Borrelli, 2015, "Scenario model predictive control for lane change assistance on highways", in 2015 IEEE Intelligent Vehicles Symposium (IV), pp. 611~616, IEEE.
  8. R. Chandra, Y. Selvaraj, M. Brannstr, R. Kianfar and N. Mrugovski, 2017, "Safe autonomous lane changes in dense traffic", in 2017 IEEE 20th International Conference on Intelligent Transportation Systems (ITSC), pp. 1~6, IEEE.
  9. B. Y. Jie, Zhang, Ning, Bian, JianPeng, Shi, Ling, Jin, XiCheng, Wang, JianGuang, Zhou, Zhao Ma, Yong Chen - Dong Feng Motor Corporation, D.-J. U. WeiWen and H.-T. HanZhi, 2014, "Simulation and Testing of Advanced Driver Assistance System Based on Environmental Model of Pedestrian-Vehicle-Road", in FISITA 2014 World Automotive Congress, Maastricht, Netherlands.
  10. Lee, Junho and Jun Won Choi, 2019, "May I Cut Into Your Lane?: A Policy Network to Learn Interactive Lane Change Behavior for Autonomous Driving", 2019 IEEE Intelligent Transportation Systems Conference (ITSC). IEEE.
  11. Shi, Tianyu, et al., 2019, "Driving decision and control for automated lane change behavior based on deep reinforcement learning", 2019 IEEE intelligent transportation systems conference (ITSC). IEEE.
  12. Wang, Pin, Ching-Yao Chan and Arnaud de La Fortelle, 2018, "A reinforcement learning based approach for automated lane change maneuvers", 2018 IEEE Intelligent Vehicles Symposium (IV). IEEE.
  13. Bae, Sangjae, et al., 2020, "Cooperation-aware lane change maneuver in dense traffic based on model predictive control with recurrent neural network", 2020 American Control Conference (ACC). IEEE.
  14. 이호준, 정용환, 민경차, 이명수, 신재곤, 이경수, 2016, "고속도로에서의 자율주행 알고리즘 개발 및 평가를 위한 다차량 시뮬레이션 환경 개발", 자동차안전학회지8.4 : 31~37.
  15. Chae, Heungseok, et al., "Design and implementation of human driving data-based active lane change control for autonomous vehicles", Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering 235.1 (2021): 55~77. https://doi.org/10.1177/0954407020947678