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Maximum acceptable speed based on physiological performance for different alignments of rural roads under the influence of visibility in fog-a driving simulator study

机译:基于农村道路不同对准的生理性能的最大可接受速度在雾气驾驶模拟器研究中的影响下

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Objectives: The goals of this research are to: (i) investigate whether the driver's physiological performance has a significant impact on driving speed choice, considering the visibility level under fog conditions and the horizontal and vertical alignment of a rural road; (ii) quantify the relationships among these variables; (iii) calculate the maximum acceptable speed that meets the driver's physiological tolerance threshold. Methods: A driving simulator study was conducted. A total of 30 participants were recruited, and each completed 5 driving simulator trials under varying visibility levels, radii of curvature and vertical grades. A multiple linear regression model was established to measure the association between normalized heart rate, driving speed, visibility, radius of curvature and gradient. Results: The results indicated that driving speed, visibility, radius of curvature and gradient all significantly affected the normalized heart rate. For instance, an increase in driving speed and vertical grade and a reduction in the radius of curvature are related to an increase in normalized heart rate. Moreover, an acceptable speed model that considered the driver's normalized heart rate was constructed, given the visibility level and horizontal and vertical alignment. Conclusions: The study shows a significant correlation between the drivers' physiological performance and his or her driving speed choice under the influence of visibility in fog. Given visibility conditions and road alignment parameters, we can calculate the maximum acceptable speed that meets the driver's physiological requirements. Such findings should be indicative of real-time traffic management that could reduce the crash risk under inadequate visibility conditions in fog.
机译:目的:本研究的目标是:(i)调查驾驶员的生理性能是否对驾驶速度选择产生重大影响,考虑到雾条件下的可见性和农村道路的水平和垂直对准; (ii)量化这些变量之间的关系; (iii)计算符合驾驶员的生理公差阈值的最大可接受速度。方法:进行驾驶模拟器研究。共有30名参与者被招募,每个参与者在不同的可见性水平下完成5个驾驶模拟器试验,曲率和垂直等级的半径。建立了多元线性回归模型,以测量归一化心率,驱动速度,可见性,曲率半径与曲率和梯度半径之间的关联。结果:结果表明,驱动速度,可见性,曲率半径和梯度均显着影响归一化心率。例如,驾驶速度和垂直等级的增加和曲率半径的减小与归一化心率的增加有关。此外,鉴于可见性水平和水平和垂直对准,构建了考虑驾驶员归一化心率的可接受的速度模型。结论:该研究表明司机的生理性能与他或她的驾驶速度选择之间的显着相关性,在雾中的可见性影响下。给定可见性条件和道路对准参数,我们可以计算满足驾驶员生理要求的最大可接受速度。这些发现应该是实时交通管理,可以降低雾中的可见度条件不足下的碰撞风险。

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