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首页> 外文期刊>IEEE Transactions on Vehicular Technology >Control Plane Optimization in Software-Defined Vehicular Ad Hoc Networks
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Control Plane Optimization in Software-Defined Vehicular Ad Hoc Networks

机译:软件定义的车辆自组织网络中的控制平面优化

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摘要

The vehicle ad hoc network (VANET) is an emerging network technology that is expected to be cost-effective and adaptable, making it ideal to provide network connection service to drivers and passengers on today's roads. In the next generation of VANETs with fifth-generation (5G) networks, software-defined networking (SDN) technology will play a very important role in network management. However, for infotainment applications, high latency in VANET communication imposes a great challenge for network management, whereas direct communication through the cellular networks brings high cost. In this paper, we present an optimizing strategy to balance the latency requirement and the cost on cellular networks, in which we encourage vehicles to send the SDN control requests through the cellular networks by rebating network bandwidth. Furthermore, we model the interaction of the controller and vehicles as a two-stage Stackelberg game and analyze the game equilibrium. From the experimental results, the optimal rebating strategy provides smaller latency than other control plane structures.
机译:车辆自组织网络(VANET)是一种新兴的网络技术,预计具有成本效益和适应性强,因此非常适合为当今道路上的驾驶员和乘客提供网络连接服务。在具有第五代(5G)网络的下一代VANET中,软件定义网络(SDN)技术将在网络管理中扮演非常重要的角色。但是,对于信息娱乐应用,VANET通信中的高延迟给网络管理带来了巨大挑战,而通过蜂窝网络进行的直接通信带来了高昂的成本。在本文中,我们提出了一种优化策略,以平衡蜂窝网络的等待时间要求和成本,在这种策略中,我们鼓励车辆通过回扣网络带宽来通过蜂窝网络发送SDN控制请求。此外,我们将控制器和车辆的相互作用建模为两阶段Stackelberg博弈,并分析了博弈均衡。从实验结果来看,最佳折扣策略比其他控制平面结构提供的延迟更短。

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