基于VANET中链路质量和邻居节点的模糊GPSR路由选择

Israa A. Aljabry, G. Al-Suhail, W. Jabbar
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引用次数: 3

摘要

近年来,一种名为VANET(车辆自组织网络)的新技术被大力推荐用于智慧城市,特别是智能交通系统(ITS)。VANET技术依赖于节点像汽车一样运行,而不需要任何控制器或中央基站,通过在节点之间创建无线链路。它使汽车能够在自己和周围环境之间发送和接收信息。大多数vanet使用基于位置的路由协议,因为它们包含GPS设备。为了解决VANET的问题,一种解决方案是地理边界无状态路由(GPSR),它已经得到了广泛的实现。本文提出了一种有效的智能模糊逻辑控制系统;称为FL-QN GPSR路由协议。所提出的路由协议包含两个度量链路质量的指标,并且通过邻居节点来检测数据包转发的最佳下一跳节点,并且通过添加方向字段来更新Hello消息的格式,使其更适合我们的仿真。同时使用omnet++和SUMO仿真工具来检查VANET环境。在城市环境中进行的四次仿真实验结果表明,在QoS参数方面,与传统的GPSR和AODV相比,网络性能有了实质性的提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Fuzzy GPSR Route Selection Based on Link Quality and Neighbor Node in VANET
Over recent years, a new technology named VANET (Vehicular Ad-hoc Networks) is highly recommended in smart cities and especially in Intelligent Transportation Systems (ITS). The VANET technology relies on the nodes acting like cars without the necessity for any controller or central base station by creating a wireless link among them. It enables cars to send and receive information between themselves and their environment. most VANETs utilize position-based routing protocols because they contain a GPS device. To deal with VANET problems, one solution is Geographic Perimeter Stateless Routing (GPSR) which has been broadly implemented. This paper suggests an effective intelligent fuzzy logic control system; called the FL-QN GPSR routing protocol. The proposed routing protocol incorporates two metrics link quality, and neighbor node to detect the best next-hop node for packet forwarding also updates the format of the Hello message by adding the direction field to be more suitable to our simulation. The OMNeT++ and SUMO simulation tools are both used in parallel to examine the VANET environment. The obtained results of the four simulation experiments in urban environments indicate substantial improvements in the network performance compared to the traditional GPSR and AODV concerning the QoS parameters.
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