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On the global dynamics of connected vehicle systems

机译:关于连通车辆系统的全局动态

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In this contribution, heterogeneous connected vehicle systems, that include human-driven as well as connected automated vehicles, are investigated. The reaction time delay of human drivers as well as the communication and actuation delays of connected automated vehicles is incorporated in the model. Saturations due to the speed limit and limited acceleration capabilities of the vehicles are also taken into account. The arising nonlinear delayed system is studied using analytical and numerical bifurcation analysis. Stability analysis is used to identify regions in parameter space where oscillations arise due to loss of linear stability of the equilibrium. Moreover, with the help of numerical continuation, bistability between the equilibrium and oscillations is shown to exist due to the presence of an isola. It is demonstrated that utilizing long-range wireless vehicle-to-vehicle communication the connected automated vehicle is able to eliminate the oscillations and keep the traffic flow smooth.
机译:在该贡献中,研究了包括人机驱动以及连接的自动车辆的异构连接的车辆系统。模型中,人类驱动程序的反应时间延迟以及连接自动车辆的通信和致动延迟。还考虑了由于速度限制而导致的饱和度和有限的加速能力。使用分析和数值分配分析研究了所产生的非线性延迟系统。稳定性分析用于识别参数空间中的区域,其中由于平衡的线性稳定性损失而产生的振荡。此外,在数值延续的帮助下,由于isola的存在,显示了平衡和振荡之间的双稳性。据证明,利用连接的自动化车辆的远程无线车辆通信能够消除振荡并保持交通流量光滑。

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