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An NFV-Based Edge Platform for Low-Latency V2X Services Supporting Vehicle Mobility-Driven Auto Scaling

机译:基于NFV的低延迟V2X服务边缘平台,支持车辆移动性驱动的自动缩放

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To guarantee low-latency and reliable end-to-end connectivity and provide suitable resources for vehicle-to-everything (V2X) services, the network function virtualization (NFV)-based multi-access edge computing (MEC) technology has been recognized as an effective solution. In the literature, few studies have proposed corresponding NFV-based MEC frameworks to provide V2X services. However, these works only discuss the concept of applying the NFV to the MEC to offer V2X services without implementing it in a real testbed. On the other hand, within the NFV-based MEC framework, several studies have investigated the NFV auto scaling mechanism to provide suitable resources for different services. However, these works are not suitable for V2X services, which exhibit unique traffic characteristics. In this paper, we (1) implement an NFV-based edge platform to provide vehicles with low-latency V2X services, (2) implement a vehicle mobility-driven NFV auto scaling mechanism that forecasts the resource requirements for V2X services and triggers the scaling operations if needed, and (3) use the open source software to build an NFV testbed and deploy our platform as virtual network functions to the NFV testbed. Finally, we implement a simple V2X service to validate our proposed edge platform, justifying that it, together with our NFV auto scaling mechanism, requires affordable processing delay and supports low V2X service latency.
机译:为了保证低延迟和可靠的端到端连接并为车辆到所有(V2X)服务提供合适的资源,网络功能虚拟化(NFV)基于基于多访问边缘计算(MEC)技术已被识别为有效的解决方案。在文献中,很少有研究提出了相应的基于NFV的MEC框架,以提供V2X服务。然而,这些作品仅讨论将NFV应用于MEC的概念,以提供V2X服务,而无需在实际测试平台中实现它。另一方面,在基于NFV的MEC框架内,几项研究已经研究了NFV自动缩放机制,为不同服务提供合适的资源。但是,这些作品不适合展示独特的交通特性的V2X服务。在本文中,我们(1)实现了基于NFV的边缘平台,以提供具有低延迟V2X服务的车辆,(2)实现车辆移动性驱动的NFV自动缩放机制,该机制预测V2X服务的资源需求并触发缩放触发缩放如果需要操作,并且(3)使用开源软件构建一个NFV测试,并将我们的平台作为虚拟网络功能部署到NFV测试。最后,我们实现了一个简单的V2X服务来验证我们提出的边缘平台,使其与我们的NFV自动缩放机制一起要求它需要经济实惠的处理延迟并支持低V2X服务延迟。

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