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Autonomous vehicles in mixed motorway traffic: capacity utilisation, impact and policy implications

机译:混合高速公路交通中的自动车辆:能力利用,影响和政策影响

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In upcoming years, the introduction of autonomous vehicles (AVs) will reshape the transport system. The transition from a regular to an autonomous transport system, however, will take place over many years and lead to a long period with a mixed driving environment where AVs and regular vehicles (RVs) operate side by side. The purpose of this study is to investigate how the utilisation of the road capacity degrades as a function of heterogeneity in congested motorways. The analysis is based on a dedicated traffic simulator, which enables the investigation of complex dynamic spillback from congestion while allowing for different degrees of heterogeneity. The representation of autonomous vehicles is based on a modified intelligent driver model (IIDM) presented by Treiber et al. (Phys Rev E 62(2):1805-1824, 2000) and Treiber and Kesting (Traffic flow dynamics, Springer, Heidelberg, 2013), while the behaviour of drivers of RVs relies on a stochastic version of the IIDM. Three main conclusions stand out. Firstly, it is shown that in an idealised environment in which AVs operate alone, a substantially improved capacity utilisation can be attained. Secondly, when drivers of RVs are mixed with AVs, capacity utilisation degrades very fast as a function of the share of RVs. Thirdly, it is shown that the improved capacity utilisation of AVs comes in the form of reduced travel time and increased throughput, with indications that travel time reductions are the most important. From a strategical planning perspective, the results underline that dedicated lanes are preferable to attain the positive effects of AVs. Specifically, we compare a stylised situation with three lanes with a share of 33% AVs to a situation with two regular lanes and a single dedicated AV lane. The latter represents a tripling in consumer surplus all other things being equal.
机译:在即将到来的几年里,自动车辆(AVS)的引入将重塑运输系统。然而,从常规到自主运输系统的过渡将在多年内发生,并且具有长时间的混合驾驶环境,其中AVS和常规车辆(RVS)并排操作。本研究的目的是调查如何利用道路容量的利用,作为拥挤高速公路中的异质性的函数。该分析基于专用流量模拟器,其能够从拥塞调查复杂的动态溢出,同时允许不同程度的异质性。自治车辆的表示基于Treiber等人提供的修改智能驱动程序模型(IIDM)。 (PHOME REV E 62(2):1805-1824,2000)和徒步和敏捷(交通流量动态,Springer,Heidelberg,2013),而RVS驱动程序的行为依赖于IIDM的随机版本。三个主要结论脱颖而出。首先,示出,在AVS单独操作的理想环境中,可以获得基本上提高的能力利用。其次,当RV的驱动程序与AVS混合时,容量利用率就像RVS的份额一样快速地降低。第三,表明,AVS的提高能力利用呈减少的旅行时间和增加的吞吐量,迹象表明旅行时间减少是最重要的。从战略规划的角度来看,结果强调了专用车道优选达到AVS的积极影响。具体而言,我们将程式化的局势与三个车道进行比较,份额为33%的AVS到具有两个常规车道和单个专用AV车道的情况。后者代表了消费者剩余的三倍,所有其他东西都是平等的。

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