基于SDN和雾计算的交叉口vanet路由

Naserali Noorani, S. Seno
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引用次数: 9

摘要

车辆自组织网络(VANET)作为智能交通系统(ITS)的主要组成部分之一,面临着架构不灵活、无线通信不稳定、传输范围有限以及车辆高机动性导致的重复拓扑变化等问题。目前vanet在建立通信和数据转发方面的挑战之一出现在没有路侧单元(RSU)覆盖的地区,称为通信覆盖漏洞。在这些领域,车辆通过车对车(V2V)通信负责数据转发。同时考虑到大数据产生和大数据的问题,车辆的通信能力可以用于数据转发和建立有效的通信,通过互联网及其基础设施消除不必要的带宽使用。本文的目的是提出一种改进V2V通信中数据转发的方法,以弥补通信覆盖漏洞。这可以帮助覆盖通信覆盖漏洞。为此,利用软件定义网络(SDN)和雾计算的优势来改进V2V通信,提出了一种基于SDN和雾计算的交叉口路由SFIR。最后对该方法进行了仿真,并与现有协议进行了比较。结果表明,SFIR显著提高了包投递率、丢包率和延迟时间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Routing in VANETs Based on Intersection Using SDN and Fog Computing
Vehicular ad-hoc networks (VANET), as one of the main components of intelligent transport systems (ITS), face many issues including architecture inflexibility, instability of wireless communications, limitation in transmission range, repetitive topological variations due to high vehicle mobility, etc. One of the current challenges in VANETs in establishing communication and data forwarding arises in areas without Road Side Unit (RSU) coverage, called communication coverage holes. In these areas, vehicles are responsible for data forwarding through vehicle-to-vehicle (V2V) communication. Also given the issues of large data production and big data, communicative capability of vehicles can be used for data forwarding and establishing efficient communication, eliminating unnecessary bandwidth usage through the Internet and its infrastructures. The purpose of this article is proposing a method to improve data forwarding in V2V communication so as to cover communication coverage holes. This can help cover communication coverage holes. To this end, the advantages of software-defined network (SDN) and fog computing are used to improve V2V communication, and propose an intersection-based routing based on SDN and fog computing called SFIR. Finally the method is simulated and compared with the current protocols. Results indicate that SFIR significantly improves packet delivery ratio, packet loss ratio, and delay time.
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