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Heterogeneous Vehicular Communications-Multi-Standard Solutions to Enable Interoperability

机译:异构车辆通信 - 多标准解决方案,以实现互操作性

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Vehicular communication is considered to be a key enabler for future automated driving applications, which is considered one of the most promising vertical sectors for mobile networks. The 5.9 GHz frequency band has been allocated for safety and non-safety critical services in various regions of the world. Two radio access technologies have being defined and are currently competing for market adoption: IEEE Wireless Access in Vehicular Environments (WAVE)/Dedicated Short-Range Communications (DSRC) based on the IEEE 802.11p and 3GPP LTE Cellular Vehicle-to-Everything (C-V2X). Standard bodies have independently specified these technologies, which rely on different channel access schemes. Consequently, three major challenges arise when the two technologies are supposed to access the spectrum in the 5.9 GHz band: Coexistence, Interoperability and Backwards Compatibility. Moreover, multi-operator interoperability is another key issue for a wide market acceptance. In this paper, we propose an innovative way to use Multi-access Edge Computing (MEC) infrastructure, preferably colocated with Coud-RAN, to enable interoperability between distinct vehicular communication systems operating in the same band at the same location. Moreover, we also show how MEC enables vehicles from multiple OEMs to communicate via multiple Mobile Network Operators (MNOs) and Intelligent Transport Systems (ITS) service providers.
机译:车辆通信被认为是未来自动化驾驶应用的关键推动器,其被认为是移动网络最有前途的垂直扇区之一。 5.9 GHz频段已在世界各地的安全和非安全关键服务中分配。已经定义了两个无线电接入技术,目前正在竞争市场采用:基于IEEE 802.11p和3GPP LTE蜂窝车辆到一切的IEEE在车辆环境中的无线访问(波浪)/专用短程通信(DSRC)(C -v2x)。标准机构已独立指定这些技术,依赖于不同的渠道访问方案。因此,当两种技术应该访问5.9 GHz频段中的频谱时,出现了三个主要挑战:共存,互操作性和向后兼容性。此外,多运营商互操作性是广泛市场接受的另一个关键问题。在本文中,我们提出了一种使用多访问边缘计算(MEC)基础设施,优选地与Coud-RAN的基础设施的创新方法,以实现在同一位置在同一频带中操作的不同车辆通信系统之间的互操作性。此外,我们还展示了MEC如何使车辆来自多个OEM的车辆通过多个移动网络运营商(MNOS)和智能传输系统(其)服务提供商进行通信。

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