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Performance analysis of V2V dynamic anchor position-based routing protocols

机译:V2V动态锚基于位置的路由协议的性能分析

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Recently, vehicular ad hoc networks (VANETs) have received more attention in both academic and industry settings. One of the challenging issues in this domain is routing protocols. VANETs' unique characteristics such as high mobility with the constraint of road topology, fast network topology changes, frequently disconnected networks, and time-sensitive data exchange makes it difficult to design an efficient routing protocol for routing data in vehicle-to-vehicle (V2V) and vehicle-to-infrastructure communications. Designing routing protocols for V2V commutations are more challenging due to the absence of infrastructure nodes in the communication procedure. They become even more challenging, when they get benefit from dynamic anchor computation method in which the anchor nodes (junctions or basic nodes for routing) are dynamic in their routing procedure. Position-based routing protocols have been proven to be superior and outperform the other protocols since there is no requirement to establish and save a route between source and destination during the routing process which is suitable for dynamic nature of vehicular networks. In this paper, the performance of V2V dynamic anchor position-based routing protocols, which are proposed for the most challenging condition of packet routing in VANET, are investigated and evaluated under two different scenarios (i.e. various vehicle densities and velocities) through NS-2. The obtained results are then illustrated based on average delay, packet delivery ratio and routing overhead as routing performance indicators. Our objective is to provide a quantitative assessment of the applicability of these protocols in different vehicular scenarios. The comparison provided in this paper makes the research contribution of this survey paper quite higher than a regular survey paper only with explanations.
机译:最近,车载自组织网络(VANET)在学术和行业环境中都受到了越来越多的关注。在这一领域中具有挑战性的问题之一是路由协议。 VANET的独特特性,例如高移动性,道路拓扑的约束,快速的网络拓扑变化,频繁断开的网络以及对时间敏感的数据交换,使得难以设计出有效的路由协议来在车到车(V2V)中路由数据)和车辆到基础设施的通信。由于通信过程中没有基础结构节点,因此设计用于V2V换向的路由协议更具挑战性。当他们从动态锚点计算方法中受益时,它们变得更具挑战性,在这种方法中,锚点节点(用于路由的节点或基本节点)在其路由过程中是动态的。基于位置的路由协议已被证明是优越的,并且优于其他协议,因为在路由过程中不需要在源与目的地之间建立和保存适合于汽车网络动态特性的路由。在本文中,针对在VANET中分组路由最具挑战性的条件下提出的基于V2V动态锚位置的路由协议的性能,通过NS-2在两种不同的情况下(即,不同的车辆密度和速度)进行了研究和评估。 。然后根据平均延迟,数据包传送率和作为路由性能指标的路由开销说明获得的结果。我们的目标是对这些协议在不同车辆场景中的适用性进行定量评估。本文提供的比较使该调查论文的研究贡献比仅具有解释的常规调查论文高得多。

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