Optimal Controls of Vehicle Trajectories in Fleet Management Using V2I Information

Xiaoliang Ma, J. Mårtensson
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引用次数: 5

Abstract

Given the raised focus on transport energy and traffic-induced environmental issues, the ability of reducing vehicular environmental impacts is of great importance for intelligent traffic management. The recent development in vehicle-to-infrastructure (V2I) communication provides an effective means for continuous management of vehicle driving. This study presents an essential step of the work towards a dynamic fleet management system that takes advantages of real-time traffic information and communication. Based on the optimal control theory, a methodological approach is developed to control the environmental impacts of live vehicle fleets. In particular, vehicle trajectories that minimize local environmental objectives are derived by applying a discrete dynamic programming method. Numerical examples show that the method is promising for local V2I based traffic management applications and can be further extended for more complex optimal control problems in dynamic fleet management.
基于V2I信息的车队管理中车辆轨迹最优控制
随着人们对交通能源和交通引发的环境问题的日益关注,减少车辆对环境影响的能力对于智能交通管理非常重要。近年来,车对基础设施(V2I)通信技术的发展为车辆行驶的持续管理提供了有效手段。本研究为建立利用实时交通信息和通信的动态车队管理系统迈出了重要的一步。基于最优控制理论,提出了一种控制现役车队环境影响的方法。特别是,通过应用离散动态规划方法,导出了最小化局部环境目标的车辆轨迹。数值算例表明,该方法适用于基于V2I的局部交通管理,并可进一步推广到动态车队管理中更复杂的最优控制问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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