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TRAFFIC DENSITY CONTROL FOR AUTOMATED HIGHWAY SYSTEMS

机译:自动化高速公路系统的交通密度控制

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Traffic flow instabilities such as traffic congestion are often caused by ad hoc and inappropriate speeds and headways that humans choose when they operate their vehicles. In an automated highway system (AHS) environment, the driver's actions are replaced by those of a computer control system that is designed to optimize traffic flow. On the microscopic level, each vehicle is driven by a computer control system, which, based on the actions of the surrounding vehicles, sends the appropriate commands to the throttle/brake/steering actuators. On the macroscopic level, a roadway controller calculates the desired speed commands to be followed by vehicles in each section of the freeway lanes in order to achieve desired traffic density distributions that lead to optimum traffic flow conditions. In this paper, we design, analyze and simulate a roadway controller for an automated highway that achieves desired traffic densities along the lane. A macroscopic traffic flow model that is modified for AHS operation is used for control design and analysis. We show that the proposed roadway controller guarantees exponential convergence of the traffic density at each section to the desired density. Simulation results are used to illustrate the effectiveness of the proposed controller and the significant benefits AHS may bring to traffic flow. (C) 1997 Elsevier Science Ltd. [References: 25]
机译:诸如交通拥堵之类的交通流不稳定通常是由人们在操作车辆时选择的临时性和不合适的速度和车速造成的。在自动公路系统(AHS)环境中,驾驶员的行为被旨在优化交通流量的计算机控制系统所取代。在微观层面上,每辆车都由计算机控制系统驱动,该计算机控制系统根据周围车辆的动作向油门/制动器/转向执行器发送适当的命令。在宏观层面上,道路控制器计算高速公路车道各段中的车辆要遵循的期望速度命令,以实现导致最佳交通流状况的期望交通密度分布。在本文中,我们设计,分析和模拟了用于自动高速公路的道路控制器,该高速公路控制器可沿车道实现所需的交通密度。针对AHS操作进行修改的宏观交通流模型用于控制设计和分析。我们表明,所提出的道路控制器保证了每个路段的交通密度到期望密度的指数收敛。仿真结果用于说明所提出的控制器的有效性以及AHS可能为交通流带来的重大利益。 (C)1997 Elsevier Science Ltd. [参考:25]

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