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Modeling car-following dynamics during the starting and stopping process based on a spring system model

机译:基于弹簧系统模型的起停过程中的跟车动力学建模

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Car-following models describe how one vehicle follows the preceding vehicles. In order to better model and explain car-following dynamics, this paper categorizes the state of a traveling vehicle into three sub-processes: the starting (acceleration) process, the car-following process, and the stopping (deceleration) process. The starting process primarily involves vehicle acceleration behavior. The stopping process involves not only car-following behavior but also deceleration behavior. This paper regards both the stopping process and the starting process as spring systems. The car-following dynamics during the starting process and the stopping process is modeled in this paper. The parameters of the proposed models, which are represented in the form of trigonometric functions, possess explicit physical meaning and definitive ranges. We have calibrated the model of the starting process using data from the Traffic Engineering Handbook, and obtained reasonable results. Compared with traditional stimulus-response car-following models, this model can better explain traffic flow phenomena and driver behavior theory.
机译:跟车模型描述了一辆车如何跟随前面的车。为了更好地建模和解释跟车动力学,本文将行驶车辆的状态分为三个子过程:启动(加速)过程,跟车过程和停止(减速)过程。起动过程主要涉及车辆的加速行为。停车过程不仅涉及跟车行为,还涉及减速行为。本文将停止过程和启动过程都视为弹簧系统。本文对启动和停止过程中的跟车动力学进行了建模。所提出的模型的参数以三角函数的形式表示,具有明确的物理意义和确定的范围。我们已经使用《交通工程手册》中的数据对启动过程的模型进行了校准,并获得了合理的结果。与传统的刺激响应汽车跟随模型相比,该模型可以更好地解释交通流现象和驾驶员行为理论。

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