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      KCI등재 SCOPUS

      Vision and odometry based autonomous vehicle lane changing

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      https://www.riss.kr/link?id=A106609467

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      다국어 초록 (Multilingual Abstract)

      Autonomous driving is an old desire of mankind. The main purpose of this article is to present an autonomous lane changing method, that enables fully automated lane changing if given safety criteria are met. Environment detection is executed by multiple sensors such as radar, LIDAR and a smart-camera. Intrinsic sensors of the vehicle are utilized as well to ensure a smooth transition between lanes. The test results obtained on a closed test track prove the usefulness of the presented methodology. The resulting algorithm and experiences collected during implementation could be useful for integration into a larger system.
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      Autonomous driving is an old desire of mankind. The main purpose of this article is to present an autonomous lane changing method, that enables fully automated lane changing if given safety criteria are met. Environment detection is executed by multip...

      Autonomous driving is an old desire of mankind. The main purpose of this article is to present an autonomous lane changing method, that enables fully automated lane changing if given safety criteria are met. Environment detection is executed by multiple sensors such as radar, LIDAR and a smart-camera. Intrinsic sensors of the vehicle are utilized as well to ensure a smooth transition between lanes. The test results obtained on a closed test track prove the usefulness of the presented methodology. The resulting algorithm and experiences collected during implementation could be useful for integration into a larger system.

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      참고문헌 (Reference)

      1 C. F. Karney, "Transverse mercator with an accuracy of a few nanometers" 85 (85): 475-485, 2011

      2 F. You, "Trajectory planning and tracking control for autonomous lane change maneuver based on the cooperative vehicle infrastructure system" 42 (42): 5932-5946, 2015

      3 M. Bujarbaruah, "Torque based lane change assistance with active front steering" IEEE 1-6, 2017

      4 A. Barsi, "Supporting autonomous vehicles by creating hd maps" 16 : 2017

      5 R. Schubert, "Situation assessment for automatic lane-change maneuvers" 11 (11): 607-616, 2010

      6 W. Liu, "Rear vehicle detection and tracking for lane change assist" IEEE 252-257, 2007

      7 A. A. Assidiq, "Real time lane detection for autonomous vehicles" IEEE 82-88, 2008

      8 R. Marino, "Nested pid steering control for lane keeping in autonomous vehicles" 19 (19): 1459-1467, 2011

      9 C.M. Kang, "Lateral control system for autonomous lane change system on highways" 9 : 877-884, 2016

      10 S. Kato, "Lane-change manoeuvres for visionbased vehicle" IEEE 129-134, 1997

      1 C. F. Karney, "Transverse mercator with an accuracy of a few nanometers" 85 (85): 475-485, 2011

      2 F. You, "Trajectory planning and tracking control for autonomous lane change maneuver based on the cooperative vehicle infrastructure system" 42 (42): 5932-5946, 2015

      3 M. Bujarbaruah, "Torque based lane change assistance with active front steering" IEEE 1-6, 2017

      4 A. Barsi, "Supporting autonomous vehicles by creating hd maps" 16 : 2017

      5 R. Schubert, "Situation assessment for automatic lane-change maneuvers" 11 (11): 607-616, 2010

      6 W. Liu, "Rear vehicle detection and tracking for lane change assist" IEEE 252-257, 2007

      7 A. A. Assidiq, "Real time lane detection for autonomous vehicles" IEEE 82-88, 2008

      8 R. Marino, "Nested pid steering control for lane keeping in autonomous vehicles" 19 (19): 1459-1467, 2011

      9 C.M. Kang, "Lateral control system for autonomous lane change system on highways" 9 : 877-884, 2016

      10 S. Kato, "Lane-change manoeuvres for visionbased vehicle" IEEE 129-134, 1997

      11 J. E. Naranjo, "Lane-change fuzzy control in autonomous vehicles for the overtaking maneuver" 9 (9): 438-, 2008

      12 A. Suzuki, "Lane recognition system for guiding of autonomous vehicle, in: Intelligent Vehicles’92 Symposium" 196-201, 1992

      13 M. Ruder, "Highway lane change assistant" IEEE 1 : 240-244, 2002

      14 A. Szijj, "Hacking cars in the style of stuxnet"

      15 L. Hobert, "Enhancements of v2x communication in support of cooperative autonomous driving" 53 (53): 64-70, 2015

      16 Z. Shiller, "Emergency lane-change maneuvers of autonomous vehicles" 120 (120): 37-44, 1998

      17 W. Nelson, "Continuous-curvature paths for autonomous vehicles" IEEE 1260-1264, 1989

      18 Y. Du, "Autonomous lane-change controller via mixed logical dynamical" IEEE 1154-1159, 2014

      19 E. D. Dickmanns, "Autonomous high speed road vehicle guidance by computer vision1" 20 (20): 221-226, 1987

      20 U. Franke, "Autonomous driving goes downtown" 13 (13): 40-48, 1998

      21 J. Berner, "Automatic tuning of simple regulators withspecifications on phase and amplitude margins" 54 : 231-245, 2016

      22 C. Hatipoglu, "Automated lane change controller design" 4 (4): 13-22, 2003

      23 Q. Li, "A sensor-fusion drivable-region and lane-detection system for autonomous vehicle navigation in challenging road scenarios" 63 (63): 540-555, 2014

      24 M. A. Sotelo, "A color vision-based lane tracking system for autonomous driving on unmarked roads" 16 (16): 95-116, 2004

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2020-01-01 평가 등재학술지 유지 (해외등재 학술지 평가) KCI등재
      2017-08-01 평가 SCOPUS 등재 (기타) KCI등재
      2017-01-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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