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An Extended Non-Lane-Based Optimal Velocity Model with Dynamic Collaboration

机译:具有动态协作的扩展的基于非泳道的最优速度模型

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Incorporating the effects of the lane width in traffic, in this paper, we propose a dynamical model based on the strategy of three-vehicle cooperation driving. We obtain the smoother acceleration distribution in the new model through considering the dynamic collaboration with the nearest preceding vehicle and the nearest following vehicle. It is proved that the stability of the new model is greatly improved compared to the early non-lane-based car following model by using the linear stability theory. We find that when the parameter of lateral separation distance is identified, the amplitude of traffic congestion decreases with increasing the strength of dynamic collaboration in the simulation experiments. In addition, we apply the new extended model to simulate the motions of cars starting from a traffic signal and the dissipating of the traffic congestion; it is found that our new model can predict realistic delay time and kinematic wave speed and obtained a faster dissipation speed of traffic congestion than the traffic flow model without considering the dynamic collaboration.
机译:结合车道宽度对交通的影响,本文提出了一种基于三车协同驾驶策略的动力学模型。通过考虑与最近的在前车辆和最近的在后车辆的动态协作,我们在新模型中获得了更平滑的加速度分布。通过使用线性稳定性理论,证明了与早期基于非车道的汽车跟随模型相比,新模型的稳定性得到了极大的提高。我们发现,当确定横向间隔距离的参数时,交通拥堵的幅度随着仿真实验中动态协作强度的增加而减小。此外,我们使用新的扩展模型来模拟从交通信号灯开始的汽车运动以及交通拥堵的消散;发现我们的新模型可以在不考虑动态协作的情况下预测现实的延迟时间和运动波速度,并获得比交通流模型更快的交通拥堵消散速度。

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