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Utility-based fair bandwidth sharing in vehicular networks (extended)

机译:车载网络中基于实用程序的公平带宽共享(扩展)

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摘要

The time-constraint data traffic is very common in vehicle-to-infrastructure (V2I) and vehicle-to-vehicle (V2V) communications. Time-constraint flows are those who have fixed start and stop times and try to maximize the transferred data volume during the limited connection time. From the view of users, the total data transmitted by each flow should be proportional to each one's holding time if the network resources are allocated fairly. However, we find that the traditional fairness concept solely based on flow rates is not suitable for this scenario. Therefore, we redefine the fairness concept regarding the application utility for time-constraint flows. According to this new utility-based fairness definition, we propose two practical bandwidth sharing schemes for transferring data by fast moving wireless nodes such as vehicles. Simulations through ns-2 show that the proposed algorithms can achieve better utility fairness than the standard TCP and are also friendly to TCP in the long term.
机译:在车辆到基础设施(V2I)和车辆到车辆(V2V)通信中,时间受限的数据流量非常普遍。时间约束流是指那些具有固定开始和停止时间并试图在有限的连接时间内最大化传输的数据量的流。从用户的角度来看,如果公平分配网络资源,则每个流传输的总数据应与每个人的保持时间成比例。但是,我们发现仅基于流量的传统公平性概念不适用于这种情况。因此,我们重新定义了有关时间约束流的应用程序实用程序的公平性概念。根据这个基于效用的新公平性定义,我们提出了两种实用的带宽共享方案,用于通过快速移动的无线节点(例如车辆)传输数据。通过ns-2进行的仿真表明,所提出的算法比标准TCP可以实现更好的效用公平性,并且从长远来看也对TCP友好。

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