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A novel speed model for safety evaluation of freeway alignment in Euclidean 3D space

机译:欧几里德3D空间高速公路对齐安全评估的新速度模型

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Objective: Operating speed is a critical indicator to evaluate consistency of road alignment and safety. Although extensive studies have been conducted on developing operating speed models, few researchers have considered the interactive influence of horizontal and vertical alignment in 3D space. The purpose of this study is to develop a speed model based on 3D alignment in Euclidean space rather than traditional horizontal and vertical alignment.Methods: According to the curve theory of differential geometry, a novel method to estimate operating speed is proposed in our study using 3D space curvature instead of traditional horizontal or vertical parameters to describe the spatial geometric properties for a freeway alignment. Speeds of 54 different alignment segments are observed to develop the speed model. Several observing sites of each segment are selected beforehand, and the speeds of more than 300 vehicles in each site are observed. Space curvature is used as an important index to estimate operating speed.Results: The findings of this study indicated that both horizontal alignment and vertical alignment contribute to space curvature. Space curvature mainly affects direction control operating performance. However, vehicles overcome the effects of gravity along the vertical alignment in the z direction. Results indicate that operating speed exponentially declines with space curvature and that quadratic parabola decline with vertical grade.Conclusions: It can be concluded that there is a clear correlation between velocity and spatial curvature, which is proved by variance analysis. The estimation results of the speed models are reliable as tested using a real engineering example. The study would provide a scientific basis for safety evaluation of freeway alignment.
机译:目的:操作速度是评估道路对准和安全一致性的关键指标。虽然在开发运营速度模型上进行了广泛的研究,但很少有研究人员考虑了3D空间中水平和垂直对齐的互动影响。本研究的目的是开发基于欧几里德空间的3D对齐的速度模型,而不是传统的水平和垂直对准。方法:根据差分几何曲线理论,在我们的研究中提出了一种估计操作速度的新方法3D空间曲率而不是传统的水平或垂直参数来描述高速公路对齐的空间几何属性。观察到54种不同的对准段的速度来开发速度模型。预先选择每个段的几个观察部位,观察每个部位超过300辆车辆的速度。空间曲率被用作估计操作速度的重要指标。结果:本研究的结果表明,水平对准和垂直对准均有助于空间曲率。空间曲率主要影响方向控制操作性能。然而,车辆沿Z方向上沿垂直对准克服重力的影响。结果表明,空间曲率下降率下降,并且具有垂直等级的二次抛物线下降。结论:可以得出结论,速度和空间曲率之间存在明显的相关性,这通过方差分析证明了这一速度和空间曲率。速度模型的估计结果是使用真实工程示例的测试的可靠性。该研究将为高速公路对准的安全评估提供科学依据。

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