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A co-benefit and tradeoff evaluation framework for connected and automated vehicle applications

机译:互联和自动车辆应用的协同效益和权衡评估框架

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A large number of Connected and Automated Vehicle (CAV) applications have been emerging that benefit transportation systems in terms of safety, mobility and the environment. These benefits can be quantified by a variety of performance indices (PIs) as described in recent literature. However, there has been very little research in analyzing the potential co-benefits and tradeoffs among all these PIs for the various CAV applications. In this paper, we examine a number of CAV applications whose system effectiveness focus is targeted on the three key areas of safety, mobility and environment, and then examine whether some PIs are synergistic or antagonistic. Using the Lane Speed Monitoring application as a specific example, we explore the in-depth relationship between different types of measures of effectiveness (MOEs) under different penetration rates of the technology, in order to show the association between the application focus and tradeoffs to be made among different performance measures. As part of the analysis, several future research directions are discussed, including the identification of key influential factors on system performance to obtain co-benefits in terms of different types of MOEs.
机译:大量的联网和无人驾驶汽车(CAV)应用已经出现,它们在安全性,机动性和环境方面都有益于运输系统。如最近的文献所述,可以通过各种性能指标(PI)来量化这些收益。但是,在分析各种CAV应用程序的所有这些PI之间潜在的协同效益和权衡方面,研究很少。在本文中,我们检查了许多CAV应用程序,其系统有效性集中在安全性,机动性和环境三个关键领域,然后检查了某些PI是协同还是拮抗。以车道速度监控应用程序为例,我们探索了在技术的不同渗透率下不同类型的有效性度量(MOE)之间的深入关系,以显示应用程序关注点与权衡取舍之间的联系。在不同的绩效指标之间进行比较。作为分析的一部分,讨论了几个未来的研究方向,包括确定影响系统性能的关键影响因素,以获得不同类型的MOE的共同利益。

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