• 제목/요약/키워드: road lane constraint

검색결과 4건 처리시간 0.022초

차로 제한 조건을 이용한 차로 구분 성능 분석 (Performance Analysis of Road Lane Recognition using Road Condition Constraint)

  • 강우용;이은성;박재익;한지애;홍운기;김현수;허문범;남기욱
    • 한국항행학회논문지
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    • 제15권3호
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    • pp.432-440
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    • 2011
  • 본 논문에서는 위성항법 기반 교통인프라에서 제공되는 정보를 이용하여 차로 구분에 적용할 때 차로 구분 성능을 향상시키기 위한 차로 제한 조건을 제시하고 시뮬레이션을 통하여 성능을 검증하였다. 차로 제한 조건은 차량의 진행 방향과 차량이 위치하고 있는 차로의 관계를 이용하여 1차로와 마지막 차로의 차로 구분 임계치를 크게 설정하여 차로 구분 성공률을 향상시키는 기법이다. 시뮬레이션 결과 차로 제한 조건을 사용할 경우 4차로에서는 40%, 6차로에서는 25%, 8차로에서는 15%의 성능차로 구분 성능이 향상됨을 확인하였다.

Lane Detection Using Road Geometry Estimation

  • Lee, Choon-Young;Park, Min-Seok;Lee, Ju-Jang
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 1998년도 제13차 학술회의논문집
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    • pp.226-231
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    • 1998
  • This paper describes how a priori road geometry and its estimation may be used to detect road boundaries and lane markings in road scene images. We assume flat road and road boundaries and lane markings are all Bertrand curves which have common principal normal vectors. An active contour is used for the detection of road boundary, and we reconstruct its geometric property and make use of it to detect lane markings. Our approach to detect road boundary is based on minimizing energy function including edge related term and geometric constraint term. Lane position is estimated by pixel intensity statistics along the parallel curve shifted properly from boundary of the road. We will show the validity of our algorithm by processing real road images.

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퍼셉션 넷에 기반한 차량의 자동 차선 위치 제어에 관한 연구 (A Study on the automatic Lane keeping control method of a vehicle based upon a perception net)

  • 부광석;정문영
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 2000년도 제15차 학술회의논문집
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    • pp.257-257
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    • 2000
  • The objective of this research is to monitor and control the vehicle motion in order to remove out the existing safety risk based upon the human-machine cooperative vehicle control. A predictive control method is proposed to control the steering wheel of the vehicle to keep the lane. Desired angle of the steering wheel to control the vehicle motion could be calculated based upon vehicle dynamics, current and estimated pose of the vehicle every sample steps. The vehicle pose and the road curvature were calculated by geometrically fusing sensor data from camera image, tachometer and steering wheel encoder though the Perception Net, where not only the state variables, but also the corresponding uncertainties were propagated in forward and backward direction in such a way to satisfy the given constraint condition, maintain consistency, reduce the uncertainties, and guarantee robustness. A series of experiments was conducted to evaluate the control performance, in which a car Like robot was utilized to quit unwanted safety problem. As the results, the robot was keeping very well a given lane with arbitrary shape at moderate speed.

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차량 군집주행을 위한 제어 네트워크의 변수 추정 및 제어 (State Estimation and Control in a Network for Vehicle Platooning Control)

  • 최재원;황태현;김영호
    • 제어로봇시스템학회논문지
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    • 제6권8호
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    • pp.659-665
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    • 2000
  • In this paper a platoon merging control system is considered as a remotely located system with state represented by a stochastic process. in the system it is common to encounter situations where a single decision maker controls a large number of subsystems and observation and control signals are sent over a communication channel with finite capacity and significant transmission delays. Unlike a classical estimation problem where the observation is a continuous process corrupted by additive noise there is a constraint that the observation must be coded and transmitted over a digital communication channel with fintie capacity. A recursive coder-estimator sequence is a state estimation scheme based on observations transmitted with finite communication capacity constraint. in this paper we introduce a stochastic model for the lead vehicle in a platoon of vehicles in a lane considering the angle between the road surface and a horizontal plane as a stochastic process. In order to merge two platoons the lead vehicle of the following platoon is controlled by a remote control station. Using the observation transmitted over communication channel the remote control station designs the feedback controller. The simulation results show that the intervehicle spacings and the deviations from the desired intervehicle spacing are well regulated.

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