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A Game Theoretic Formulation of Path Selection in Urban Transportation Networks

机译:城市交通网络路径选择的博弈论公式

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Vehicular transportation networks are formed by interconnection of multiple networks leading to a particular class of complex networks called multi-layer networks. These networks are formed due to interaction between vehicles, vehicles and infrastructure (like a cloud), and data exchange at the infrastructure level. The interaction between these networks, and particularly the dependency of the networks formed between the infrastructure and on-road (possibly connected) vehicles at different geographical areas, affect the behaviour of all the elements in these networks. An integrated architecture of vehicular transportation networks for a multi-commodity heterogeneous traffic in an urban scenario is proposed in this paper. The heterogeneity exists due to different detection abilities of vehicles, owing to connectivity facilities and sensing capabilities, and the mode of driving (autonomous or manual) in the vehicles. Considering the multi-layer network architecture, the interconnection between the infrastructure network and the vehicle mobility network is studied. Using game theoretic tools, the impact of path prediction via infrastructure network on decision-making in vehicles and vice-versa is analyzed. The problem is formulated and modelled as a repeated Stackelberg game with incomplete information.
机译:车辆运输网络是由多个网络相互连接形成的,从而导致一类称为多层网络的复杂网络。这些网络是由于车辆,车辆和基础设施(如云)之间的交互以及基础设施级别的数据交换而形成的。这些网络之间的交互,尤其是基础结构与位于不同地理区域的公路(可能是连接的)车辆之间形成的网络的依存关系,会影响这些网络中所有元素的行为。本文提出了一种针对城市场景中的多商品异构交通的车辆运输网络的集成架构。由于车辆的连接能力和传感能力以及车辆的驾驶方式(自动或手动),车辆的检测能力不同,因此存在异质性。考虑到多层网络架构,研究了基础设施网络与车辆移动网络之间的互连。使用博弈论工具,分析了通过基础设施网络进行的路径预测对车辆决策的影响,反之亦然。该问题被公式化和建模为具有不完整信息的重复Stackelberg游戏。

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