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New Geometric Design Approach to Reduce Vehicle's Speed in Accident-Prone Downgrade Highways Using Dynamic Vehicle Modeling

机译:新的几何设计方法,以减少车辆速度在易于降级高速公路中使用动态车辆建模

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摘要

Steep downgrades are known as a part of mountain roads with a significant number of severe crashes. Generally, using speed limiters such as speed bumps and speed humps are considered the most effective (considering both the time and cost) ways to reduce the number of victims. The efficiency of speed limiters depends on the driver's consciousness and the car's braking system; the latter could be problematic in wet and dark conditions of the road. The main goal of the current study is to propose an approach to correct the longitudinal profile of roads by replacing the consecutive downgrades and upgrades with a continuous downgrade. The vehicle's speed is reduced by using this method before entering an accident-prone site without the driver's involvement and breaking. To this end, a well-known software program is used under two speeds (70 and 100 km/h) in 68 different routes to analyze speed along the proposed routes. Also, another computer model is used for dynamic simulation. Dynamic analyses and regression models show that the vehicle's speed in the new proposed route is significantly reduced compared with the continuous downgrade. Moreover, results indicate that the upgrade slope of the proposed route has the most impact on reducing the final speed of the vehicles.
机译:陡坡被称为山路的一部分,具有大量的严重撞车。通常,使用速度限制器,例如速度凸起和速度驼峰被认为是最有效的(考虑到时间和成本)减少受害者数量的方法。速度限制器的效率取决于驾驶员的意识和汽车的制动系统;后者在道路的潮湿和黑暗条件下可能存在问题。目前的研究的主要目标是提出一种方法来纠正道路纵向轮廓,通过替代连续降级和连续降级来升级。在没有驾驶员参与和打破的情况下,在进入事故易发的网站之前,通过使用这种方法减少了车辆的速度。为此,众所周知的软件程序在68个不同的路由中使用了两个速度(70和100km / h),以沿着所提出的路线分析速度。此外,另一台计算机模型用于动态仿真。动态分析和回归模型表明,与连续降级相比,新建议路线中的车辆速度显着减少。此外,结果表明,拟议路线的升级坡度对降低车辆最终速度的影响最大。

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