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Mobile Standards-Based Traffic Light Detection in Assistive Devices for Individuals with Color-Vision Deficiency

机译:辅助设备中基于移动标准的交通灯检测,用于有色觉缺陷的个人

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Considering the substantial population affected by some form of color-vision deficiency (CVD), reliable traffic control signal head light detection is an important problem for driver-assistance systems. While a large number of technologies can be used to localize traffic lights, without drastic changes in infrastructure, only visual information can be used in identifying the status of the light. In addition, traffic light detection is not currently integrated into any driver-assistance systems, making driving for individuals with CVD (where permitted) dangerous to other drivers, pedestrians, and themselves. This paper presents a robust, traffic-standards-based, and computationally efficient method for detecting the status of the traffic lights without relying on Global Positioning System, lidar, radar information, or prior (map-based) knowledge. To the extent of our knowledge, this is the first work to use official Institute of Transportation Engineers (U.S.) and British Standards Institute (European Union) standards for defining traffic light colors, as well as integrating a number of fail-safe mechanisms designed to prevent erroneous detection. The algorithm can be easily ported over to an embedded smart camera platform and used as a windshield-mounted driver-assistance device by individuals with CVD. The system can accurately identify the status of the light at 400 ft away from the intersection, reliably detecting solid, faulty, arrow, and high-visibility signal lights. Over 50 h of video (over 2000 intersections) were tested with the system, containing intersections with one to four traffic lights, governing different lanes of traffic, with 97.5% accuracy of solid light detection.
机译:考虑到受某种形式的色觉不足(CVD)影响的大量人口,可靠的交通控制信号前灯检测是驾驶员辅助系统的重要问题。尽管可以使用大量技术对交通信号灯进行定位,而无需对基础设施进行巨大的更改,但是只有视觉信息可以用于识别交通灯的状态。此外,交通信号灯检测当前未集成到任何驾驶员辅助系统中,这使得有CVD(如果允许)的个人行驶对其他驾驶员,行人及其自身构成危险。本文提出了一种鲁棒的,基于交通标准的,计算效率高的方法来检测交通灯的状态,而无需依赖于全球定位系统,激光雷达,雷达信息或先前的(基于地图的)知识。就我们所知,这是首次使用官方的运输工程师学会(美国)和英国标准学会(欧盟)的标准来定义交通信号灯颜色,以及整合许多故障安全机制的工作,防止错误检测。该算法可以轻松地移植到嵌入式智能相机平台上,并由具有CVD的人员用作安装在挡风玻璃上的驾驶员辅助设备。该系统可以准确识别相交路口400英尺处的灯光状态,从而可靠地检测到实心,故障,箭头和高可见度的信号灯。使用该系统测试了超过50小时的视频(超过2000个十字路口),其中包含带有一到四个交通信号灯的十字路口,可控制不同的行车线,实心灯检测的准确度为97.5%。

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