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Synthetic Approach for Scenario-Based Performance Estimation of Connected Vehicles Operating at Highway Facilities

机译:高速设施运行车辆的情景性能估算的综合方法

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Connected Vehicle (CV) systems are envisioned to enhance a wide range of safety, mobility and environmental aspects to highway traffic. A critical research need lies in clarifying the cause-and-effect mechanism between the CV information and driver behaviors and subsequent adaptive resiliency of improvement in operation, safety, and emissions reductions. A novel approach is hence created via developing the simulation-based tool, Synthetic Adaptive V2X Effect (SAVE) Estimator, to explore the interactions between the CV system and transportation performance. This presentation will introduce preliminary results from the speaker's on-going research on identifying factors possibly affecting travel behavior and rationale of their aggregated impact on mobility, safety, and vehicle emission in support of simulated outcomes of synthesized scenarios at a freeway and ramp conjunction facility in the Cincinnati are, Ohio (USA). The framework and associated modeling methodology for the development of the SAVE Estimator will be also introduced alongside the discussion of the case study.
机译:连接的车辆(CV)系统设想,以提高大范围的安全性,流动性和环保方面的公路交通。一个关键的研究需求在​​于澄清简历信息和驱动程序的行为和操作,安全性和减少排放的改进以后的适应性弹性的原因和作用机理。的新方法是通过开发基于模拟的工具,合成自适应V2X效应(SAVE)估算,探索CV系统和运输性能之间的相互作用,因此创建。本次演讲将介绍的初步结果,从扬声器对识别的因素在高速公路上可能会影响旅游行为以及对流动性,安全性,并支持合成情景模拟的结果车辆排放的聚集影响的理由正在进行的研究和坡道结合设施中辛辛那提是,俄亥俄(USA)。对于SAVE估计的开发框架和相关的建模方法也将推出旁边的案例研究的讨论。

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