Interconnecting smart cities by vehicles: How feasible is it?

Florian Hagenauer, C. Sommer, R. Onishi, Matthias Wilhelm, F. Dressler, O. Altintas
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引用次数: 14

Abstract

In future smart cities cars will play an important role not only by transporting people and goods, but also as information hubs. Cars will be equipped with various communication technologies and will be able to offer their own resources like data storage, processing power, and sensor data (e.g., camera pictures or temperature). In Car4ICT, cars in smart cities connect service producers and consumers by offering service discovery for them and transferring the data in-between. But, the proposed architecture cannot be used as-is for interconnecting smart cities or transferring data from and to rural areas. This is due to mobility patterns outside of cities being different and requiring specialized algorithms. Therefore, in this paper we extend Car4ICT to interconnect smart cities and rural areas. The extension still relies on IVC as cellular coverage in rural areas is often sparse. By covering additional areas, the number of available services increases and a redundant communication link between smart cities is added. To support long-distance communication, we changed core parts of the architecture and evaluated the changes with extensive simulations. For this, we used a segment from the freeway between Tokyo and Osaka in Japan and evaluated the transmission delay for various distances. The foundation for these simulations was real world traffic data provided by Japanese authorities. Based on these simulations we can show for which distance Car4ICT in a freeway scenario is still feasible.
汽车互联智慧城市:可行性如何?
在未来的智能城市中,汽车将不仅在运送人员和货物方面发挥重要作用,而且还将作为信息枢纽发挥重要作用。汽车将配备各种通信技术,并能够提供自己的资源,如数据存储、处理能力和传感器数据(如摄像头图片或温度)。在Car4ICT中,智能城市中的汽车通过为服务生产者和消费者提供服务发现并在两者之间传输数据来连接服务生产者和消费者。但是,所提出的架构不能原样用于智能城市互连或与农村地区之间的数据传输。这是由于城市以外的移动模式不同,需要专门的算法。因此,在本文中,我们将Car4ICT扩展到互联智慧城市和农村地区。由于农村地区的手机覆盖率通常很低,因此扩展仍然依赖于IVC。通过覆盖更多的领域,可用服务的数量增加,并增加了智能城市之间的冗余通信链路。为了支持远距离通信,我们更改了体系结构的核心部分,并通过广泛的模拟评估了这些更改。为此,我们使用了日本东京和大阪之间高速公路的一段,并评估了不同距离的传输延迟。这些模拟的基础是日本当局提供的真实世界交通数据。基于这些模拟,我们可以证明Car4ICT在高速公路上的距离仍然是可行的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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