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On Building Cooperative Intelligent Transportation Systems over Public Transports

机译:论公共交通协同智能交通系统的构建

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Cooperative Intelligent Transportation Systems (CITS) have gained an increasing interest in the last few years. Within these systems, vehicles use wireless communications to cooperatively exchange information in the perspective of enhancing traffic efficiency and comfort. Public transport represents an excellent candidate for C-ITS support. Indeed, unlike private cars, public transport vehicles are inherently cooperative and can be easily augmented with wireless communication capabilities. In this paper, we analyze the communication contact opportunities between public transport buses. Understanding these contacts is a basic building block towards the design and deployment of intelligent, distributed and cooperative applications on top of bus public transport systems. We particularly investigate bus-to-bus contacts in the actual bus public transport of the entire Luxembourg city over a whole day. This city is a representative example of many other European cities. Our study shows that both space and time are chief factors in the characterization of bus-to-bus contacts. Different geographical regions and daytimes show varied contacts properties. Our analysis thus stresses the importance of considering large-scale scenarios when evaluating C-ITS.
机译:在过去的几年中,合作智能交通系统(CITS)引起了越来越多的兴趣。在这些系统中,从提高交通效率和舒适度的角度来看,车辆使用无线通信来协作交换信息。公共交通是C-ITS支持的绝佳选择。的确,与私家车不同,公共交通车辆本质上是协作的,可以通过无线通信功能轻松扩展。在本文中,我们分析了公交巴士之间的交流接触机会。了解这些联系是在公交公共交通系统之上设计,部署智能,分布式和协作应用程序的基本基础。我们会整天调查整个卢森堡市实际公交公共交通中的公交到公交联系。这个城市是许多其他欧洲城市的代表。我们的研究表明,空间和时间都是表征总线到总线接触的主要因素。不同的地理区域和白天显示不同的联系人属性。因此,我们的分析强调了评估C-ITS时考虑大规模场景的重要性。

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