网联自动驾驶汽车路面性能的漂移效应

IF 2.7 Q2 CONSTRUCTION & BUILDING TECHNOLOGY
J. Pais, P. Pereira, L. Thives
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引用次数: 0

摘要

联网和自动驾驶汽车(CAV)将改变道路工程师设计路面的方式,因为它们可以将自己定位在交通车道内,比人类驾驶的汽车更精确地保持在车道上的位置。与传统车辆相比,这些车辆将具有较低的横向徘徊,这可能会对路面造成更大的破坏,例如裂缝和永久变形,并对基础设施造成影响,因为裂缝增加,车辙降低了安全性。因此,有必要评估漫游对路面性能的影响,以确定其在CAV上实施的政策。本文研究了车辆横向漂移对路面性能的影响,同时考虑了路面的抗疲劳和抗永久变形能力。这种影响可以用来定义漫游的限制,以尽量减少人行道上的痛苦。研究结果表明,对于铺设10 cm沥青层的路面,漂移效应对疲劳寿命的影响更为显著。行走0.2 m时,路面寿命提高20%,行走0.6 m时,路面疲劳寿命提高48%。对于永久变形,移动0.2 m时,路面寿命增加2%,移动0.6 m时,路面寿命可增加34%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Wander Effect on Pavement Performance for Application in Connected and Autonomous Vehicles
Connected and Autonomous Vehicles (CAV) will change how road engineers design road pavements because they can position themselves within a traffic lane, keeping their position in the lane more precisely than human-driven vehicles. These vehicles will have lower lateral wandering, which can induce more damage to pavements, such as cracking and permanent deformation, than the conventional vehicles, with consequences for the infrastructures due to the increased cracking and reduced safety due to the rutting. Thus, it is essential to assess the wander effect on pavement performance to define policies for its implementation on CAV. This paper studies the impact of the lateral wander of the traffic on pavement performance, considering its fatigue and permanent deformation resistance. This impact can be used to define limits for the wander to minimize distresses on the pavement. The results of this study allow us to conclude that for a pavement with a 10 cm asphalt layer, the wander effect is more significant for fatigue life. A pavement life increase of 20% was observed for a wander of 0.2 m, while for 0.6 m, the fatigue life can increase up to 48%. For the permanent deformation, a pavement life increase of 2% for a wander of 0.2 m was observed, but for 0.6 m, the pavement life can be increased up to 34%.
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来源期刊
Infrastructures
Infrastructures Engineering-Building and Construction
CiteScore
5.20
自引率
7.70%
发文量
145
审稿时长
11 weeks
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