A Survey of Vehicular Network Systems for Road Traffic Management
Обзор систем автомобильных сетей для управления дорожным движением
2022-01-01
SCID: 54.1/vgnvs9rg
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Intelligent Transport SystemsMobile Edge ComputingV2V/V2I/V2X communicationVehicular cloud computingVehicular communication systems
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Abstract (AI)
In this survey, we analyze the proposals of vehicular communication systems in the context of road traffic management. Starting with the definition of communications between vehicles (V2V), vehicles-to-infrastructure (V2I) and vehicles-to-everything (V2X), we first focus on the requirements and current standards for the Intelligent Transport Systems (ITS), including the maximum communication delay, the communication range and the size of messages (in the case of V2I transmission). After that, we analyze the use cases in line with the implementation of intelligent traffic management and review the respective methods that support or directly manage traffic on roads. One of the primary objectives of this paper is to highlight the architectures of four classes of systems able to support vehicular traffic management and communication between vehicles and roadside infrastructure, namely: vehicular cloud computing (VCC), cloudlets, Mobile Edge Computing (MEC) and fog computing. In this context, we also present our classification of the methods for these four classes of architectures. In the end, we provide our opinion on problems and limitations concerning the deployment of mechanisms belonging to each considered architecture class.
Key Findings
1
It identifies and compares four supporting architecture classes: vehicular cloud computing, cloudlets, Mobile Edge Computing, and fog computing.
2
It reviews ITS communication requirements and standards, including maximum delay, communication range, and V2I message size.
3
The paper examines traffic-management use cases and methods that support or directly control road traffic through vehicular communications.
4
The survey analyzes V2V, V2I, and V2X communications for intelligent transportation systems and road traffic management.
5
The survey proposes a classification of methods within these architecture classes and discusses deployment problems and limitations for each.
Research Object
vehicular communication systems for road traffic management
Research Subject
communication requirements, use cases, architectures, methods, and deployment limitations for intelligent vehicular traffic management
Publication Details
Publication Date
2022-01-01
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