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A Novel Approach for Mixed Manual/Connected Automated Freeway Traffic Management

机译:混合人工/自动高速公路自动交通管理的新方法

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摘要

Freeway traffic management and control often rely on input from fixed-point sensors. A sufficiently high sensor density is required to ensure data reliability and accuracy, which results in high installation and maintenance costs. Moreover, fixed-point sensors encounter difficulties to provide spatiotemporally and wide-ranging information due to the limited observable area. This research exploits the utilization of connected automated vehicles (CAVs) as an alternative data source for freeway traffic management. To handle inherent uncertainty associated with CAV data, we develop an interval type 2 fuzzy logic-based variable speed limit (VSL) system for mixed traffic. The simulation results demonstrate that when more 10% CAVs are deployed, the performance of the proposed CAV-based system can approach that of the detector-based system. It is demonstrated in addition that the introduction of CAVs may make VSL obsolete at very high CAV-equipment rates.
机译:高速公路交通管理和控制通常依赖于定点传感器的输入。需要足够高的传感器密度以确保数据的可靠性和准确性,这导致高昂的安装和维护成本。此外,由于可观察区域有限,定点传感器在提供时空和大范围信息方面遇到困难。这项研究利用互联自动车(CAV)作为高速公路交通管理的替代数据源。为了处理与CAV数据相关的固有不确定性,我们针对混合交通开发了基于区间2型模糊逻辑的可变速度限制(VSL)系统。仿真结果表明,当部署10%以上的CAV时,所提出的基于CAV的系统的性能可以接近基于探测器的系统。此外,还证明了CAV的引入可能会使VSL在非常高的CAV设备率下过时。

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