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首页> 外文期刊>Journal of Transportation Engineering >Optimal Trajectory Control for Left-Turn Vehicles at Exit Lane for Left-Turn Intersections
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Optimal Trajectory Control for Left-Turn Vehicles at Exit Lane for Left-Turn Intersections

机译:左转交叉口出口车道左转车辆的最佳轨迹控制

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摘要

The exit lane for left-turn (EFL) intersection is a newly proposed unconventional intersection that can alleviate left-turn traffic congestion at intersections. The EFL design characteristic lies in that a part of exit lanes can be provisionally used as left-turn lanes to provide additional capacity for left-turn traffic. The inappropriate lane selection of human drivers decreases the effectiveness of such design. This paper establishes an optimal trajectory planning model for left-turn vehicles at EFL intersections under the automated driving environment. The longitudinal acceleration and lane changing variables are optimized simultaneously. The optimization model is formulated as a mixed-integer linear model, which ensures the computational efficiency. The effectiveness of the proposed model is explored under various traffic, geometric, and signal control conditions. The results show that the model can provide a suitable control strategy for left-turn vehicles. On average, traffic delay can be reduced by 47.3%. The proposed model has a promising control effect under high volume conditions. Moreover, the proposed model performs stably under the various length of the mixed-usage area.
机译:左转(EFL)交叉路口的出口通道是一种新提出的非传统交叉路口,可以缓解交叉口的左转交通拥堵。 EFL设计特性在于,可以临时用作左转通道的一部分出口通道,以提供左转流量的额外容量。人类驱动因素的不恰当的小巷会降低这种设计的有效性。本文在自动化驾驶环境下建立了EFL交叉口的左转车辆的最佳轨迹规划模型。纵向加速度和车道更换变量同时进行优化。优化模型作为混合整数线性模型配制,可确保计算效率。在各种流量,几何和信号控制条件下探讨了所提出的模型的有效性。结果表明,该模型可以为左转车辆提供合适的控制策略。平均而言,交通延迟可以减少47.3%。所提出的模型在大容量条件下具有有希望的控制效果。此外,所提出的模型在混合使用区域的各种长度下稳定地执行。

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