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Eco approaching at an isolated signalized intersection under partially connected and automated vehicles environment

机译:在部分连接和自动驾驶的环境下,Eco接近隔离的信号交叉口

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This research proposed an eco-driving system for an isolated signalized intersection under partially Connected and Automated Vehicles (CAV) environment. This system prioritizes mobility before improving fuel efficiency and optimizes the entire traffic flow by optimizing speed profiles of the connected and automated vehicles. The optimal control problem was solved using Pontryagin's Minimum Principle. Simulation-based before and after evaluation of the proposed design was conducted. Fuel consumption benefits range from 2.02% to 58.01%. The CO2 emissions benefits range from 1.97% to 33.26%. Throughput benefits are up to 10.80%. The variations are caused by the market penetration rate of connected and automated vehicles and v/c ratio. No adverse effect is observed. Detailed investigation reveals that benefits are significant as long as there is CAV and they grow with CAV's market penetration rate (MPR) until they level off at about 40% MPR. This indicates that the proposed eco-driving system can be implemented with a low market penetration rate of connected and automated vehicles and could be implemented in a near future. The investigation also reveals that the proposed eco-driving system is able to smooth out the shock wave caused by signal controls and is robust over the impedance from conventional vehicles and randomness of traffic. The proposed system is fast in computation and has great potential for real-time implementation. Published by Elsevier Ltd.
机译:这项研究提出了一种在部分联网和自动驾驶汽车(CAV)环境下用于隔离信号交叉口的生态驾驶系统。该系统在提高燃油效率之前优先考虑移动性,并通过优化所连接和自动车辆的速度曲线来优化整个交通流量。使用庞特里亚金的最小原理解决了最优控制问题。在评估拟议设计之前和之后进行了基于仿真的研究。油耗收益从2.02%到58.01%。二氧化碳排放收益从1.97%到33.26%不等。吞吐量收益高达10.80%。变化是由联网和自动驾驶汽车的市场渗透率以及v / c比引起的。没有观察到不良影响。详细的调查显示,只要有CAV,收益就很显着,并且会随着CAV的市场渗透率(MPR)增长,直到达到MPR的40%左右。这表明,提出的生态驾驶系统可以在联网和自动驾驶汽车的市场渗透率较低的情况下实施,并且可以在不久的将来实施。调查还显示,拟议的生态驾驶系统能够消除由信号控制引起的冲击波,并且在常规车辆的阻抗和交通随机性方面具有较强的鲁棒性。所提出的系统计算速度快并且具有实时实施的巨大潜力。由Elsevier Ltd.发布

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