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An Extensive Investigation of an Eco-Approach Controller under a Partially Connected and Automated Vehicle Environment

机译:在部分连接和自动化车辆环境下对生态接近控制器进行广泛调查

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摘要

This study evaluated the performance of an eco-approach control system at signalized intersections under a partially connected and automated vehicle (CAV) environment. This system has the first eco-approach controller able to function with the existence of surrounding human-driven traffic. A previous evaluation only confirmed its benefits. The purpose of this study was to conduct a further extensive test on the controller to identify room for improvement. Two different networks were tested, including an isolated signalized intersection and a corridor with two signalized intersections. The measures of effectiveness (MOEs) adopted were throughput and fuel consumption. All the before-and-after MOEs were compared using t-tests. The results indicate that the controller generally improved the fuel efficiency without harm to the mobility, and its environmental performance was affected by the minimum CAV speed, green ratio, congestion level, and marker penetration rate of CAVs. A detailed investigation revealed that no significant environmental benefit was generated under high congestion levels when the minimum speed of CAVs was more than 20 mph, and the shockwaves caused by the eco-approach control may result in a gating effect that reduces the throughput at the upstream intersection of the corridor under high congestion levels.
机译:该研究评估了在部分连接和自动化车辆(CAV)环境下的信号交叉处的生态接近控制系统的性能。该系统具有第一eCO方法控制器,能够以周围的人机驱动的流量运行。以前的评估只证实了它的好处。本研究的目的是对控制器进行进一步广泛的测试,以识别改进空间。测试了两种不同的网络,包括隔离信号交叉点和具有两个信号交叉口的走廊。采用的有效性(MOES)是吞吐量和燃料消耗。使用T-Tests进行比较所有前后MOES。结果表明,控制器通常会改善燃料效率而不会造成迁移率,并且其环境性能受到脉冲的最小腔速度,绿色比率,拥塞水平和标记渗透率的影响。详细的研究表明,当脉冲的最小速度超过20英里/小时时,在高充血水平下没有产生显着的环境效益,并且由生态接近控制引起的冲击波可能导致在上游的吞吐量降低吞吐量高充血水平下走廊的交叉点。

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