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A multi-pronged approach to adaptive and context aware content dissemination in VANETs

机译:VANET中自适应和上下文感知内容分发的多管齐下的方法

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摘要

Content dissemination in Vehicular Ad-hoc Networks (VANETs) has the potential to enable a myriad of applications, ranging from advertising, traffic and emergency warnings to infotainment. This variety in applications and services calls for mechanisms able to optimize content storing, retrieval and forwarding among vehicles, without jeopardizing network resources. Content Centric Networking (CCN), takes advantage of inherent content redundancy in the network in order to decrease the utilization of network resources, improve response time and content availability, coping efficiently with some of the effects of mobility. Floating Content (FC), on the other hand, holds potential to implement efficiently a large amount of vehicular applications thanks to its property of geographic content replication, while Software Defined Networking (SDN), is an attractive solution for the lack of flexibility and dynamic programmability that characterizes current VANET architectures. By implementing a logical centralization of the network, SDN enables dynamic and efficient management of network resources. In this paper, for a few reference scenarios, we illustrate how approaches that combine CCN, FC and SDN enable an innovative adaptive VANET architecture able to efficiently accommodate to intermittent connectivity, fluctuating node density and mobility patterns on one side and application performance and network resources on the other side, aiming to achieve high QoS. For each scenario, we highlight the main open research challenges, and we describe possible solutions to improve content dissemination and reduce replication without affecting content availability.
机译:车载自组织网络(VANET)中的内容分发具有实现无数应用的潜力,从广告,交通,紧急警告到信息娱乐,应有尽有。应用程序和服务的多样性要求机制能够优化车辆之间的内容存储,检索和转发,而又不会损害网络资源。内容中心网络(CCN)利用网络中固有的内容冗余,以减少网络资源的使用,提高响应时间和内容可用性,从而有效地应对移动性的某些影响。另一方面,浮动内容(FC)由于具有地理内容复制的特性,因此具有有效实施大量车辆应用程序的潜力,而软件定义网络(SDN)是缺乏灵活性和动态性的有吸引力的解决方案可编程性是当前VANET架构的特征。通过实现网络的逻辑集中化,SDN可以动态有效地管理网络资源。在本文中,对于一些参考场景,我们说明了将CCN,FC和SDN相结合的方法如何实现创新的自适应VANET架构,该架构能够有效地适应间歇性连接,在一侧上改变节点密度和移动性以及应用程序性能和网络资源另一方面,旨在实现高QoS。对于每种情况,我们重点介绍了主要的开放研究挑战,并描述了可能的解决方案,以改善内容分发并减少复制而又不影响内容可用性。

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