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5G Industrial Networks With CoMP for URLLC and Time Sensitive Network Architecture

机译:5G工业网络与URLLC和时间敏感网络架构的COMP

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5G NR is designed from the ground up to provide support for mission critical communication with ultra-reliability and low latency (URLLC) in addition to other use cases such as enhanced mobile broadband. URLLC allows 5G network performance to approach that of wired networks (e.g., Ethernet) and paves the way for new use cases. In this paper, we focus on the end-to-end design of 5G networks for industrial factory automation. Providing URLLC wireless communication in these environments is especially challenging due to highly dynamic RF variations with possible signal blockage or reflections from moving metal objects. Coordinated Multipoint (CoMP) communication, which leverages spatial diversity to improve reliability without relying on packet retransmission, is a promising approach in these environments. We present a design and performance trade-offs between different CoMP techniques and their implication to capacity, robustness, and architecture. Subsequently, we describe architecture and protocol design aspects that allow 5G to operate as part of a time sensitive network including Ethernet bridging, time synchronization, and QoS. A prototype system that validates certain aspects of the design is also presented.
机译:除了其他用例(如增强的移动宽带)之外,5G NR专为支持与超可靠性和低延迟(URLLC)提供关键态通信的支持。 URLLC允许5G网络性能来接近有线网络(例如以太网)并为新用例铺平道路。在本文中,我们专注于5G工业工厂自动化网络的端到端设计。由于具有可能的信号堵塞或来自移动金属物体的反射的高度动态RF变化,在这些环境中提供URILC无线通信尤其具有挑战性。协调的多点(COMP)通信,它利用空间分集来提高可靠性而不依赖于数据包重传,是这些环境中有希望的方法。我们在不同的Comp技术与其对容量,鲁棒性和建筑之间的含义之间提供了一种设计和性能权衡。随后,我们描述允许5G运行的体系结构和协议设计方面作为时间敏感网络的一部分,包括以太网桥接,时间同步和QoS。还呈现了验证设计某些方面的原型系统。

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