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Optimization of Speed Hump Profiles Based on Vehicle Dynamic Performance Modeling

机译:基于车辆动态性能建模的速度驼峰曲线优化

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摘要

Speed humps are in widespread use around the world. Despite their effective performance in increasing safety, they cause considerable damage to vehicles and discomfort to drivers and passengers. This paper investigates the dynamic response of vehicles on different types of speed humps using a multibody simulation software package that is popular in the automotive industry. Following this evaluation, two new profiles are recommended to optimize the dynamic performance of speed humps. A series of formulas are also presented to estimate the dynamic performance of passenger cars on flat-topped and parabolic humps based on vehicle speed, hump dimensions, and driving behavior while traversing the hump. The results show that, for flat-topped humps, the ramp length (or entrance slope) has the greatest effect on vehicle performance. It is found that the dynamic performance of the recommended profiles is much better than that of conventional humps.
机译:速度驼峰在世界范围内得到广泛使用。尽管它们在提高安全性方面发挥了有效作用,但它们对车辆造成了相当大的损害,并给驾驶员和乘客带来不适。本文使用在汽车行业流行的多体仿真软件包,研究了车辆在不同类型的驼峰上的动态响应。进行此评估后,建议使用两个新的配置文件来优化速度驼峰的动态性能。还提出了一系列公式,用于根据车速,驼峰尺寸和横越驼峰时的驾驶行为来估算平顶和抛物线驼峰上的乘用车动态性能。结果表明,对于平顶驼峰,坡道长度(或入口坡度)对车辆性能的影响最大。发现建议的配置文件的动态性能比常规驼峰的动态性能好得多。

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