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Successive-stage speed limit on exit ramp upstream of direct-type freeway in china

机译:中国直通式高速公路上游出口匝道的连续阶段限速

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摘要

The first objective of this study is to analyze a successive-stage speed limit model developed for vehicles along the exit upstream ramp of direct-type freeway in China. This paper (1) explains the necessity to implement speed limit to the exit ramp upstream, (2) analyzes whether speed limit is related to the length of the deceleration lane, vehicle type, saturation, and turning ratio and (3) proposes a speed prediction model and calibrates speed-limit sign validity model and establishes successive-stage speed limit model. The results. Δν85≥10 illustrates the necessity of the using speed limit on the exit ramp. Speed-deceleration lane length curve presents two trends bounded by 200 m, so the speed limit should be in accordance with the deceleration length. Speed-small vehicle curve closing to speed-large vehicle curve presents that the vehicle type is not the factor of the speed limit. After curve fitting and polynomial regression, saturation is considered to be the most influential factor of speed. Speed-saturation prediction model and calibrated speed-limit sign validity model are built through linearization. According to the above results, successive-stage speed limit model is established. An exit ramp was implemented to verify the feasibility and validity of the model.
机译:这项研究的第一个目标是分析为中国直通式高速公路出口上游匝道上的车辆开发的逐级限速模型。本文(1)解释了对上游出口匝道实施限速的必要性,(2)分析限速是否与减速车道的长度,车辆类型,饱和度和转弯率有关,以及(3)提出速度预测模型,对限速标志有效性模型进行标定,建立逐级限速模型。结果。 Δν85≥10说明了在出口匝道上使用速度限制的必要性。速度-减速车道长度曲线呈现出以200 m为边界的两个趋势,因此速度极限应与减速长度一致。速度小车辆曲线接近速度大车辆曲线表明,车辆类型不是速度限制的因素。经过曲线拟合和多项式回归后,饱和度被认为是影响速度的最大因素。通过线性化建立了速度饱和度预测模型和校准的限速标志有效性模型。根据以上结果,建立了逐级限速模型。实施出口匝道以验证该模型的可行性和有效性。

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