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Vehicular Message Exchange in Cross-border Scenarios Using Public Cloud Infrastructure

机译:使用公共云基础架构的跨境方案中的车辆消息交换

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Cross-border scenarios are of extreme importance in current research work on 5G networks for connected vehicles. Network services and applications for connected vehicles, which are in specific cases expected to run on Mobile Edge Computing (MEC) infrastructure, might experience problems through country borders due to inter-domain. Given that cross-border scenarios typically imply a change of network operator, deployed MEC services need to work in such environments and, where applicable, different entities need to synchronize their input/output vehicular messages and work seamlessly in such a multi-operator context. One of most significant MEC services is vehicular message brokering. It consists on the controlled publishing and notification mechanisms to create awareness to all subscribed vehicles concerning their position as well as other significant events that may arise, such as hazardous events.This paper presents an architecture and method for vehicular message exchange, based on current Intelligent Transport Systems (ITS) standards, and proposes a novel hierarchical message brokering approach with the purpose of solving cross-domain scenarios, which can be applied not only in the aforementioned cross-border case but also in other scenarios where there is no single domain (i.e., with multiple vendors). Message Queuing Telemetry Transport (MQTT) servers are used in a hierarchical approach (locating a parent MQTT broker in a public cloud) in order to demonstrate the feasibility of using them for cross-border scenarios. Latency results are obtained in order to evaluate the performance penalty of the proposed solution.
机译:跨境场景在当前有关互联汽车5G网络的研究工作中极为重要。在特定情况下,预计将在移动边缘计算(MEC)基础结构上运行的联网车辆的网络服务和应用程序可能会由于域间而在国家/地区边界遇到问题。考虑到跨境场景通常意味着网络运营商的变化,部署的MEC服务需要在这样的环境中工作,并且在适用的情况下,不同的实体需要同步其输入/输出车辆消息并在这样的多运营商环境中无缝地工作。车载消息代理是最重要的MEC服务之一。它包括受控的发布和通知机制,以使所有订阅的车辆了解其位置以及可能发生的其他重要事件(例如危险事件)。本文基于当前的Intelligent,提出了一种用于车辆消息交换的体系结构和方法。运输系统(ITS)标准,并提出了一种新颖的分层消息代理方法,旨在解决跨域情况,该方法不仅可以应用于上述跨境情况,还可以应用于没有单个域的其他情况(即与多家供应商合作)。消息队列遥测传输(MQTT)服务器用于分层方法(在公共云中定位父MQTT代理),以证明在跨境方案中使用它们的可行性。获得延迟结果以评估所提出解决方案的性能损失。

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