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Skid resistance demands of asphalt pavement during the braking process of autonomous vehicles

机译:自动驾驶汽车制动过程中沥青路面的防滑性能要求

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As the main operationality of AVs, the braking property is directly related to traffic safety. Major traffic accidents are often related to the braking distance, the side slip and hydroplaning during the emergency braking, which depends on the pavement skid resistance. Therefore, the estimation to relate AVs braking distance requirements with pavement peak friction coefficient to ensure a safe driving condition on expressway is of high practical significance. In this paper, the effect of AVs on braking performance parameters and dynamic friction on tire-pavement interaction are investigated. Based on the field test of the Coastal highway in Jiangsu province of China, this paper proposes an algorithm to determine time-dependent braking distance of AVs considering pavement frictional properties. According to the algorithm, an AVs braking system is provided to reach the maximum braking force for improving the AVs traffic safety. Furthermore, it revises the braking distance formula of Design Specification for Highway Alignment and the skid resistance threshold adopted by Technical Specifications for Maintenance of Highway Asphalt Pavement.
机译:制动性能作为自动驾驶汽车的主要功能,直接关系到交通安全。重大交通事故通常与紧急制动期间的制动距离,侧滑和滑水有关,这取决于路面的防滑性。因此,将AVs的制动距离要求与路面峰值摩擦系数相关联以确保高速公路上的安全行驶条件的估算具有很高的现实意义。本文研究了自动驾驶汽车对制动性能参数和动摩擦对轮胎-路面相互作用的影响。基于江苏省沿海公路的现场试验,提出了一种基于路面摩擦特性的自动驾驶汽车随时间变化的制动距离确定算法。根据该算法,提供了一种AV制动系统,以达到最大制动力,从而提高了AV的行车安全性。此外,它修改了《公路线形设计规范》中的制动距离公式和《公路沥青路面养护技术规范》中采用的防滑阻力阈值。

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