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Establishment and Validation of Mainline Driver Type Model at Expressway-Ramp Merging Area

机译:高速公路坡道融合区主线驱动型模型的建立与验证

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The driver characteristic is an important factor that affects driver behaviors, however, the existing driver behavior models little consider the influence of driver own characteristic differences on the driver behaviors. As the driver mental and physical behaviors in the process of driving are uncertainty and ambiguity, the mainline vehicles at expressway-ramp merging area are selected as research object, and the fuzzy clustering theory is introduced. In order to describe the mainline drivers' characteristics accurately, the mainline vehicle acceleration, the relative speed of the current mainline vehicle to the all mainline vehicles and the lag gap of the mainline vehicle are selected to cluster by the fuzzy clustering method, and the driver type distribution model is built by K-S test method. Then, the driver type distribution data as a key parameter is incorporated into the expressway merging model, in order to represent the effect of driver characteristic on drive behavior. Finally, the microscopic traffic simulation system MTSS is taken as the simulation plat to build simulation model and validate the built mainline driver type model, the output results from the simulation system are compared with the field data, the satisfactory results indicate that the built driver type model can be used to describe the impact of driver type on driving behavior.
机译:驾驶员特性是影响驱动程序行为的重要因素,但是,现有的驾驶员行为模型很少考虑驾驶员自己对驾驶员行为的影响。随着驾驶过程中的驾驶员心理和物理行为是不确定性和歧义的,作为高速公路 - 斜坡合并区域的主线车辆被选为研究对象,并引入了模糊聚类理论。为了准确地描述主线驱动程序的特性,通过模糊聚类方法选择主线车辆加速,当前主线车辆到所有主线车辆的相对速度以及主线车辆的滞后差距,以及通过模糊的聚类方法,以及驾驶员类型分布模型由KS测试方法构建。然后,将驱动类型分发数据作为键参数结合到高速公路合并模型中,以表示驾驶员特性对驱动行为的影响。最后,将微观交通仿真系统MTSSSS作为构建仿真模型的仿真平面图,并验证内线驱动器类型模型,仿真系统的输出结果与现场数据进行比较,令人满意的结果表明内置的驱动器类型模型可用于描述驱动器类型对驾驶行为的影响。

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