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Software Defined Network-Based Multi-Access Edge Framework for Vehicular Networks

机译:软件定义了基于网络的车辆网络的多访问边缘框架

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摘要

Vehicular networks aim to support cooperative warning applications that involve the dissemination of warning messages to reach vehicles in a target area. Due to the high mobility of vehicles, imperative technologies such as software-defined network (SDN) and edge computing (EC) have been proposed for the next-generation vehicular networks. The SDN separates the control plane from data plane entities and executes the control plane software on general purpose hardware. On the other hand, EC aims to reduce the network latency and packet loss rate by pushing the computations to the edge of the network. Nevertheless, the current solutions that integrate SDN and EC could not satisfy the latency requirements for data dissemination of vehicle-to-everything (V2X) services. To bridge the gap between the two technologies, the conventional EC is enhanced to multi-access edge computing (MEC) by collocating the edge computing servers with the radio access networks. In order to improve the latency for V2X services, we propose in this paper, an SDN-based multi-access edge computing framework for the vehicular networks (SDMEV). In the proposed solution, two main algorithms are implemented. First, a fuzzy logic-based algorithm is used to select the head vehicle for each evolved node B (eNB) collocated with road-side unit (RSU) for the purpose of grouping vehicles based on their communication interfaces. Afterward, an OpenFlow algorithm is deployed to update flow tables of forwarding devices at forwarding layers. In addition, a case study is presented and evaluated using the object-oriented modular discrete event network (OMNeT++) simulation framework which includes the INET framework-based SDN. Simulation results depict that the data dissemination based-SDN supported by multi-access edge computing over SDMEV can improve the latency requirements for V2X services.
机译:车辆网络旨在支持合作警告应用,涉及传播警告信息以在目标区域中到达车辆。由于车辆的高迁移率,已经提出了用于下一代车辆网络的势在必先的技术,例如软件定义的网络(SDN)和边缘计算(EC)。 SDN将控制平面与数据平面实体分开,并在通用硬件上执行控制平面软件。另一方面,EC旨在通过将计算推到网络的边缘来降低网络延迟和丢包率。尽管如此,整合SDN和EC的当前解决方案无法满足数据传播的车辆到一切(V2X)服务的延迟要求。为了弥合两种技术之间的差距,通过将边缘计算服务器与无线电接入网络耦合来增强传统的EC到多访问边缘计算(MEC)。为了提高V2X服务的延迟,我们提出了本文的车辆网络(SDMEV)的基于SDN的多访问边缘计算框架。在所提出的解决方案中,实施了两个主要算法。首先,基于模糊的基于逻辑的算法用于为与道路侧单元(RSU)构成的每个演进节点B(eNB)的头部车辆,以基于其通信接口分组车辆。之后,部署OpenFlow算法以更新转发层的转发设备的流表。另外,使用包括基于INET框架的SDN的面向对象的模块离散事件网络(OMNET ++)仿真框架来呈现和评估案例研究。仿真结果描述,通过SDMEV的多访问边缘计算支持的基于SDN的数据传播可以提高V2X服务的延迟要求。

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