基于V2V、I2V和V2I通信矩阵分类的车辆网络重路由自治

S. Boskovich, M. Barth
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引用次数: 9

摘要

智能交通系统允许在数据分布和数据处理方面采用广泛的实施方法,以便在特定框架中使用。在本文中,我们提供了一种分析和方法来描述包含V2I, I2V和V2V通信等概念的车辆网络自治方法。具体来说,我们通过提供模拟来支持这些考虑因素,从而为那些被认为理所当然的概念提供有效性。我们还讨论了定义这些概念的体系结构实现,这些概念捕获了分类方法,通过对数据从何处收集和处理的开放解释来解决问题。我们通过系统地分类处理和数据收集之间的角色和交互,在ITS范围内提供了一个改进。此外,我们还利用处理和数据收集的关键分类,其中包括集中式或分布式框架方法。这些方法说明了车辆如何通过应用网络状态知识和网络组成来实现动态改道,从而在事故发生时缩短行驶时间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Vehicular network rerouting autonomy with a V2V, I2V, and V2I communication matrix classification
Intelligent Transportation Systems allow for broad implementation approaches regarding the distribution of data and the processing of that data for use in a particular framework. In this paper, we provide an analysis and approach in describing methods of vehicular network autonomy incorporating concepts that include V2I, I2V and V2V communications. Specifically, we provide validity to concepts that are taken for granted by providing simulations to support these considerations. We also provide a discussion of the architecture implementations that define these concepts that capture classification methods negating the problem with open interpretation as to where the data are being collected from as well as being processed. We provide a refinement within the scope of ITS by systematically classifying the roles and interaction between processing and data collection. Furthermore, we then utilize key classifications of processing and data collection that includes either a centralized or distributed framework approaches. These approaches illustrate how vehicles can be used to accomplish dynamic rerouting by applying knowledge of network state but also network composition to achieve lower travel times when incidents occur.
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