外文翻译--车辆检测技术在交通管理上的应用
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1、毕业设计 (论文 )外文资料翻译 院 系 电气学院 专 业 电气工程及其自动化 学生姓名 班级学号 外文出处 指导教师评语: 指导教师签名 : 年 月 日 Vehicle Detector Technologies for Traffic Management Applications Part 1 Lawrence A. Klein Consultant Ten different detector technologies were recently evaluated as part of the FHWA-sponsored Detection Technology for IVHS
2、program. The two primary goals of the program were: 1. To determine traffic parameters and their corresponding measurement accuracies for future Intelligent Transportation Systems (ITS) applications, 2. To perform laboratory and field tests with above-the-road mounted, surface, and subsurface detect
3、ors to determine their performance. Detectors representative of all tested technologies were found to satisfy current traffic management requirements. However, improved accuracies and new types of information, such as queue length and vehicle turning or erratic movements, may be required from detect
4、ors for future traffic management applications. The choice of a detector for a specific application is, of course, dependent on many factors, including data required, accuracy, number of lanes monitored, number of detection zones per lane, detector purchase and maintenance costs, vendor support, and
5、 compatibility with the current and future traffic management infrastructure. The results of this evaluation project is being presented in two parts. Part 1 introduces the theory of operation and the strengths and weaknesses of the various overhead detector technologies. Part 2 will provide field ev
6、aluation data and some general conclusions about detector performance and applications. Copies of the Final Report, a set of five compact disks containing the detector evaluation data, and other reports are available from the FHWA by writing to Mr. Pete Mills at HSR-1, 6300 Georgetown Pike, McLean,
7、VA 22101. Note: The detector performance data presented in this article were obtained by Dr. Klein when he was the projects Principal Investigator at Hughes Aircraft Company. INTRODUCTION Maximizing the efficiency and capacity of the existing ground transportation network is made necessary by the co
8、ntinued increase in traffic volume and the limited construction of new highway facilities in urban, intercity, and rural areas. Smart street systems that contain traffic monitoring detectors, real-time adaptive signal control systems, and motorist communications media are being combined with freeway
9、 and highway surveillance and control systems to create smart corridors that increase the effectiveness of the transportation network. The infrastructure improvements and new technologies are, in turn, being integrated with communications and displays in smart cars and public access areas (such as s
10、hopping centers) to form intelligent transportation systems. Vehicle detectors are an integral part of these modern traffic control systems. The types of traffic flow data, as well as their reliability, consistency, accuracy, and precision, and the detector response time are some of the critical par
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