Road-Oriented Geographic Routing Protocol for Urban Vehicular Ad Hoc Networks

Ryosuke Akamatsu, Keiji Obara, H. Shigeno
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引用次数: 6

Abstract

Geographic routing protocols have been developed for efficient V2V and V2I communications in vehicular ad hoc networks (VANETs). Existing approaches tackle challenges in urban environments such as dynamic vehicular network topology. However, in more realistic urban environments, vehicular networks are highly dynamic due to the complicated road topology and vehicular mobility, as well as shadowing caused by buildings. Therefore, traditional protocols based on the node-oriented approach could not be robust in such environments and suffer the trade-off between reach ability and scalability. In this paper, we propose a road-oriented geographic routing protocol with a road-based path definition. It integrates the sender-based forwarder suppression and receiver-based opportunistic forwarding by exploiting road map information as well as vehicular connectivity. A sender selects a road segment as a next-hop, and each qualified receiver carries out the Contention-Based Forwarding (CBF). We evaluate the proposed protocol and existing protocols through network simulations in an urban scenario with a real road map. Following simulation results, we discuss availability and remaining challenges in terms of reach ability as well as scalability.
面向道路的城市车辆自组织网络地理路由协议
地理路由协议是为车辆自组织网络(VANETs)中高效的V2V和V2I通信而开发的。现有的方法解决了城市环境中的挑战,如动态车辆网络拓扑。然而,在更现实的城市环境中,由于复杂的道路拓扑和车辆的移动性,以及建筑物造成的阴影,车辆网络具有高度的动态性。因此,基于面向节点的方法的传统协议在这种环境下无法实现鲁棒性,并且要在可达性和可伸缩性之间进行权衡。在本文中,我们提出了一个基于道路路径定义的面向道路的地理路由协议。它通过利用路线图信息和车辆连接,集成了基于发送方的转发抑制和基于接收方的机会转发。发送方选择一个路段作为下一跳,每个符合条件的接收方进行基于竞争的转发(CBF)。我们通过在城市场景中使用真实路线图的网络模拟来评估拟议协议和现有协议。在模拟结果之后,我们将讨论可用性以及在可达性和可伸缩性方面存在的挑战。
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