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Traffic Flow Control in Vehicular Multi-Hop Networks With Data Caching and Infrastructure Support

机译:具有数据缓存和基础架构支持的车载多跳网络中的流量控制

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This work studies the user equilibrium (UE) state and the system optimal (SO) state in vehicular communication networks that support both V2V and V2I communication. Each user in this network is assumed to make route choice that optimizes a utility function that involves the traditional travel cost and the data communication utility. The overall social cost is minimized when the network is in the SO state. However, the rational and selfish user behavior brings the network to the UE state. It is well known that, in general, the UE state does not necessarily coincide with the SO state. In this paper, we leverage the data communication aspect of the decision making to influence the users' route choices, driving the UE state to the SO state. We provide a guideline for the system operator on how to drive the network towards the SO state using the V2I bandwidth allocation scheme developed in the paper. The model and the proposed algorithm are validated using Veins simulation under IEEE 802.11p protocol. In the simulation, we also show that the system cost can be lowered compared with the UE state if the bandwidth allocation is close to the optimal solution under the proposed algorithm.
机译:这项工作研究了支持V2V和V2I通信的车辆通信网络中的用户平衡(UE)状态和系统最佳(SO)状态。假定该网络中的每个用户都进行路由选择,以优化涉及传统旅行成本和数据通信实用程序的实用程序功能。当网络处于SO状态时,总体社会成本将降至最低。但是,理性和自私的用户行为会使网络进入UE状态。众所周知,通常,UE状态不一定与SO状态一致。在本文中,我们利用决策的数据通信方面来影响用户的路由选择,从而将UE状态驱动为SO状态。我们为系统运营商提供了有关如何使用本文开发的V2I带宽分配方案将网络驱动到SO状态的指南。该模型和所提出的算法在IEEE 802.11p协议下使用Veins仿真进行了验证。在仿真中,我们还表明,如果带宽分配接近最优方案,则与UE状态相比,系统成本可以降低。

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