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5G+工业互联网应用实践 被引量:10
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作者 陈亿根 尹晓峰 邵黎勋 《中兴通讯技术》 2020年第6期2-6,共5页
5G的高速率、大容量以及超可靠低时延的特性在工业互联网场景中得到应用。在工业企业数字化转型的过程中,5G无线传输技术将分散在企业内的生产实时数据及时上传至工业互联网平台,以做进一步分析处理;5G网络切片技术结合工业互联网平台... 5G的高速率、大容量以及超可靠低时延的特性在工业互联网场景中得到应用。在工业企业数字化转型的过程中,5G无线传输技术将分散在企业内的生产实时数据及时上传至工业互联网平台,以做进一步分析处理;5G网络切片技术结合工业互联网平台提供的边缘计算能力,为网络提供了更低的时延、更好的灵活性和安全性;5G大宽带技术可以将工业视频实时回传,并利用人工智能技术进行分析,极大地提高了企业的现场管控能力;5G的定位技术给制造业智能巡检带来了新的技术选择。 展开更多
关键词 5G 增强移动宽带(eMBB) 超可靠低时延通信(urllc) 海量机器类通信(mMTC) 工业互联网平台
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A Collaborative Machine Learning Scheme for Traffic Allocation and Load Balancing for URLLC Service in 5G and Beyond
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作者 Andreas G. Papidas George C. Polyzos 《Journal of Computer and Communications》 2023年第11期197-207,共11页
Key challenges for 5G and Beyond networks relate with the requirements for exceptionally low latency, high reliability, and extremely high data rates. The Ultra-Reliable Low Latency Communication (URLLC) use case is t... Key challenges for 5G and Beyond networks relate with the requirements for exceptionally low latency, high reliability, and extremely high data rates. The Ultra-Reliable Low Latency Communication (URLLC) use case is the trickiest to support and current research is focused on physical or MAC layer solutions, while proposals focused on the network layer using Machine Learning (ML) and Artificial Intelligence (AI) algorithms running on base stations and User Equipment (UE) or Internet of Things (IoT) devices are in early stages. In this paper, we describe the operation rationale of the most recent relevant ML algorithms and techniques, and we propose and validate ML algorithms running on both cells (base stations/gNBs) and UEs or IoT devices to handle URLLC service control. One ML algorithm runs on base stations to evaluate latency demands and offload traffic in case of need, while another lightweight algorithm runs on UEs and IoT devices to rank cells with the best URLLC service in real-time to indicate the best one cell for a UE or IoT device to camp. We show that the interplay of these algorithms leads to good service control and eventually optimal load allocation, under slow load mobility. . 展开更多
关键词 5G and B5G Networks ultra reliable low latency communications (urllc) Machine Learning (ML) for 5G Temporal Difference Methods (TDM) Monte Carlo Methods Policy Gradient Methods
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