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An analytical optimization approach to the joint trajectory and signal optimization problem for connected automated vehicles

机译:连接自动车辆关节轨迹和信号优化问题的分析优化方法

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Traffic conflict points (e.g., intersections, work-zones) cause travel delay, stop-and-go traffic, and excessive energy consumption. Efforts have been taken to improve traffic conflict point perfor-mance via trajectory control of connected automated vehicles (CAV) as the CAV technology emerges. One major challenge to these efforts is the complexity in optimization of CAV trajectories, particularly with joint signal timing optimization. This challenge poses barriers to realtime application requirements, scaling them up to address network level problems and drawing analytical insights into problem structures. To overcome this challenge, this paper aims to seek for an efficient and analytical solution to a joint vehicle trajectory and signal timing optimization problem. This problem simultaneously optimizes CAV trajectories and signal timing to minimize travel delay and energy consumption at a conflicting point with two traffic approaches. This study modifies the original complex formulation in two ways. First, the vehicle trajectory shape is simplified into a piece-wise quadratic function with no more than five segments. Second, instead of using the highly non-linear instantaneous fuel consumption function, a simplified macroscopic measure is proposed to approximate fuel consumption as an analytical quadratic function of signal red interval. These simplifications provide elegant theoretical properties that enable solving an analytical exact solution to this complex problem with parsimonious analytical insights. Numerical examples reveal that the proposed model can significantly reduce travel delay and fuel consumption. Moreover, it is demonstrated that the presented algorithm is highly efficient and appropriate for real-world traffic applications.
机译:交通冲突点(例如,交叉路口,工作区)导致旅行延迟,停止和转运流量和过度的能耗。随着CAV技术的出现,已经通过连接自动车辆(CAV)的轨迹控制来改善交通冲突点穿孔漫步。对这些努力的一个重大挑战是在腔轨迹优化的复杂性,特别是在关节信号时序优化。这一挑战对实时应用要求构成了障碍,将它们扩展到解决网络级别问题并将分析洞察绘制到问题结构中。为了克服这一挑战,本文旨在寻求一个有效和分析的联合车辆轨迹和信号时序优化问题的解决方案。此问题同时优化Cav轨迹和信号时机,以最小化具有两个交通方法的冲突点的旅行延迟和能量消耗。这项研究以两种方式修改了原始的复杂配方。首先,将车辆轨迹形状简化为具有不超过五个段的明智的二次函数。其次,代替使用高度非线性瞬时燃料消耗函数,提出了一种简化的宏观度量,以将燃料消耗近似为信号红色间隔的分析二次函数。这些简化提供了优雅的理论属性,使得能够用拟议分析见解来解决这种复杂问题的分析精确解决方案。数值示例表明,所提出的模型可以显着降低旅行延迟和燃料消耗。此外,证明所呈现的算法高效且适用于现实世界的交通应用。

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