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Sensor fusion: lane marking detection and autonomous intelligent cruise control system

机译:传感器融合:车道标记检测和自主智能巡航控制系统

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Abstract: In the past few years MATRA and RENAULT have developed an Autonomous Intelligent Cruise Control (AICC) system based on a LIDAR sensor. This sensor incorporating a charge coupled device was designed to acquire pulsed laser diode emission reflected by standard car reflectors. The absence of moving mechanical parts, the large field of view, the high measurement rate and the very good accuracy for distance range and angular position of targets make this sensor very interesting. It provides the equipped car with the distance and the relative speed of other vehicles enabling the safety distance to be controlled by acting on the throttle and the automatic gear box. Experiments in various real traffic situations have shown the limitations of this kind of system especially on bends. All AICC sensors are unable to distinguish between a bend and a change of lane. This is easily understood if we consider a road without lane markings. This fact has led MATRA to improve its AICC system by providing the lane marking information. Also in the scope of the EUREKA PROMETHEUS project, MATRA and RENAULT have developed a lane keeping system in order to warn of the drivers lack of vigilance. Thus, MATRA have spread this system to far field lane marking detection and have coupled it with the AICC system. Experiments will be carried out on roads to estimate the gain in performance and comfort due to this fusion.!5
机译:摘要:在过去的几年里,Matra和Renault已经开发了一种基于LIDAR传感器的自主智能巡航控制(AICC)系统。该传感器包括充电耦合器件的传感器被设计为获取由标准汽车反射器反射的脉冲激光二极管发射。没有移动机械部件,大视野,高测量速率和距离范围的非常好的准确性和目标的角度位置使得该传感器非常有趣。它提供了具有距离和其他车辆的相对速度的装备的车,通过作用于节流阀和自动齿轮箱来控制安全距离。各种实际交通情况的实验表明,特别是在弯曲上的这种系统的局限性。所有AICC传感器都无法区分弯道和车道的变化。如果我们考虑没有车道标记的道路,则很容易理解这一点。这一事实使Matra通过提供车道标记信息来改进其AICC系统。同样在Eureka Prometheus项目的范围内,Matra和Renault开发了一个车道保存系统,以警告司机缺乏警惕。因此,Matra将该系统传播到远距离场车道标记检测,并将其与AICC系统耦合。实验将在道路上进行,以估算由于这种融合而估计性能和舒适的增益。!5

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