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A fuzzy-based approach for resource management in SDN-VANETs: Effect of trustworthiness on assessment of available edge computing resources

机译:基于模糊的SDN-VANET资源管理方法:可靠性对可用边缘计算资源评估的影响

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摘要

Vehicular Ad hoc Networks (VANETs) aim to improve the efficiency and safety of transportation systems by enabling communication between vehicles and roadside units, without relying on a central infrastructure. However, since there is a tremendous amount of data and significant number of resources to be dealt with, data and resource management become their major issues. Cloud, Fog and Edge computing, together with Software Defined Networking (SDN) are anticipated to provide flexibility, scalability and intelligence in VANETs while leveraging distributed processing environment. In this paper, we consider this architecture and implement and compare two Fuzzy-based Systems for Assessment of Neighboring Vehicles Processing Capability (FS-ANVPC1 and FS-ANVPC2) to determine the processing capability of neighboring vehicles in Software Defined Vehicular Ad hoc Networks (SDN-VANETs). The computational, networking and storage resources of vehicles comprise the Edge Computing resources in a layered Cloud-Fog-Edge architecture. A vehicle which needs additional resources to complete certain tasks and process various data can use the resources of the neighboring vehicles if the requirements to realize such operations are fulfilled. The proposed systems are used to assess the processing capability of each neighboring vehicle and based on the final value, it can be determined whether the edge layer can be used by the vehicles in need. FS-ANVPC1 takes into consideration the available resources of the neighboring vehicles and the predicted contact duration between them and the present vehicle, while FS-ANVPC2 includes in addition the vehicles trustworthiness value. Our systems take also into account the neighboring vehicles’ willingness to share their resources and determine the processing capability for each neighbor. We evaluate the proposed systems by computer simulations. The evaluation results show that FS-ANVPC1 decides that helpful neighboring vehicles are the ones that are predicted to be within the vehicle communication range for a while and have medium/large amount of available resources. FS-ANVPC2 considers the same neighboring vehicles as helpful neighbors only if they have at least a moderate trustworthiness value (VT = 0.5 ). When VT is higher, FS-ANVPC2 takes into consideration also neighbors with less available resources.
机译:车辆临时网络(VANET)旨在通过在车辆和路边单元之间进行沟通,提高运输系统的效率和安全,而无需依赖于中央基础设施。但是,由于有大量的数据和大量资源进行处理,数据和资源管理成为其主要问题。云,雾和边缘计算与软件定义的网络(SDN)一起预计将在利用分布式处理环境的同时提供Vanets的灵活性,可扩展性和智能。在本文中,我们考虑了这种体系结构和实现了两个基于模糊的系统,以评估邻近的车辆处理能力(FS-ANVPC1和FS-ANVPC2),以确定软件定义车辆临时网络中相邻车辆的处理能力(SDN -vanets)。车辆的计算,网络和存储资源包括分层云边缘架构中的边缘计算资源。需要额外资源以完成某些任务和过程的车辆各种数据可以使用邻近车辆的资源,如果要实现此类操作的要求。所提出的系统用于评估每个相邻车辆的处理能力并基于最终值,可以确定边缘层是否可以由需要的车辆使用。 FS-ANVPC1考虑了邻近车辆的可用资源以及它们之间的预测接触持续时间和本车,而FS-ANVPC2还包括车辆可靠性值。我们的系统也考虑到邻近的车辆愿意分享资源并确定每个邻居的处理能力。我们通过计算机仿真评估所提出的系统。评价结果表明,FS-ANVPC1决定有用邻近车辆是被预测为所述车辆的通信范围内一段时间,并且具有中等/大量可用资源的那些。 FS-Anvpc2仅将相同的邻近车辆视为有用的邻居,只有它们至少具有适度的可靠性值(vt = 0.5)。当VT更高时,FS-AnvPC2也考虑了具有较少可用资源的邻居。

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