Private 5G Networks / 5G Non-Public Networks (NPNs)

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课程名称:私有5G网络 / 5G非公共网络(NPNs) 课程概述:近年来,私有5G网络的采用大幅增加,监管机构为企业分配越来越多的频谱,使其能够建立自己的私有5G网络。与公共网络不共享流量的特点,为企业带来了变革性的机遇,企业可以利用5G的高可靠性、高速连接、低延迟、安全性和能效。这为物联网(IoT)创造了新的可能性,并产生了新的收入来源。私有5G网络可以被视为一种无线局域网(LAN),利用5G技术创建专用带宽和基础设施,以满足公司的特定连接需求。此外,私有5G网络还可以与时间敏感网络(TSN)集成,以应用于工业4.0。因此,未来的工厂将实现无缝线缆连接,能够满足自动化与控制中时间敏感应用的所有要求。 课程内容: 第一部分:私有5G网络介绍 - 私有5G网络的定义 - 私有5G网络在工厂中的应用原因 - 私有5G网络在机场和集装箱枢纽等领域的应用原因 - 私有5G网络的关键要求 第二部分:私有5G网络的关键驱动因素 - 超低延迟特性 - 高可靠性特征 - PDU会话中的QoS自定义 - 5G网络切片 - 移动边缘计算(MEC) - 大规模多天线技术与波束成形 第三部分:私有5G网络的频谱 - 5G频段 - 私有5G网络的频谱类型 - 许可频谱 - 共享频谱 - 共享频谱的信道使用协调 - 非许可频谱 - 非许可频谱共享技术 第四部分:私有5G/非公共网络(NPNs)的部署模型 - 非公共网络(NPNs)介绍 - 部署模型 - 独立非公共网络(SNPN) - SNPN注册用户如何使用公共网络服务 - 公共网络集成非公共网络(PNI-NPNs)及其类型 1. 共享RAN PNI-NPN 2. 共享RAN与控制面PNI-NPN 3. 由公共网络托管的PNI-NPN - PNI-NPN中的闭环接入组(CAG) 第五部分:工业4.0与时间敏感网络 - 工业4.0与时间敏感网络介绍 - 用于确定性通信的时间敏感网络(TSN) - TSN架构及其组件 - TSN网络中的时间同步重要性 - TSN网络中的时间感知调度 - TSN示例工作流 第六部分:5G系统(5GS)与TSN的协同工作 - 5G系统(5GS)与TSN协同工作介绍 - TSN应用功能(AF) - 网络暴露功能(NEF) - 会话管理功能(SMF) - 政策与计费功能(PCF) - 访问与移动管理功能(AMF) - 设备端TSN转换器(DS-TT)与网络端TSN转换器(NW-TT) - 作为TSN桥梁的5G系统特性 第七部分:TSN与5G网络中的同步 - TSN与5G网络中的同步介绍 - 5G域中的时钟流 - 两个TSN域之间的时钟流 - 计算5G桥中的驻留时间 第八部分:5G与TSN的协同工作程序 - 5G与TSN的协同工作程序类型 1. 5G TSN桥检测 2. 5G TSN桥信息报告 3. 5G TSN桥上的TSN流量调度 - 时间敏感通信 - 时间同步功能(TSCTSF)

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Recent years have seen a lot of increase in the adoption of private 5G networks, regulators are allocating more and more spectrum to the enterprises so that they can build their own private 5G networks. The fact that these networks they do not share traffic with public networks is a game changer for enterprises, as they can leverage the reliability, high-speed connectivity, low latency, security and power efficiency of 5G. This opens up new IoT possibilities and generates new revenue streams. A private 5G network can be thought of as a wireless local area network (LAN) that uses 5G-enabled technologies to create a network with dedicated bandwidth and infrastructure that meets a company's specific connectivity needs. Private 5G networks can also be integrated with Time Sensitive Networking (TSN) for use in industry 4.0. So, future factories will be without cables and wires but can fulfill all requirements of time sensitive applications used in automation and control. Course Contents: Section 1: Introduction to Private 5G Networks What is a Private 5G Network? Why Private 5G Networks in a Factory? Why Private 5G Networks in Airports & Container Hubs etc? Why Private 5G Networks in Airports & Container Hubs etc? Key Requirements for Private 5G NetworksSection 2: Key Enablers for the Private 5G Networks Ultra Low Latency Features High Reliability Features QoS Customization in PDU Session 5G Network Slicing Mobile Edge Computing (MEC) Massive MMO & BeamformingSection 3: Frequency Spectrum for Private 5G Networks 5G Frequency Bands Spectrum Types for Private 5G Networks Licensed Spectrum Shared Spectrum Channel Usage Co-ordination in Shared Spectrum Unlicensed Spectrum Unlicensed Spectrum Sharing TechniquesSection 4: Deployment Models For Private 5G/Non-Public Networks (NPNs) Introduction to Non-Public Networks (NPNs) Deployment Models Standalone Non-Public Network (SNPN) How a SNPN Registered UE can use Services of a Public Network Public Network Integrated Non-Public Networks (PNI-NPNs) and its Types 1. Shared RAN PNI-NPN 2. Shared RAN and Control Plane PNI-NPN 3. Hosted by the Public Network PNI-NPN Closed Access Group (CAG) in PNI-NPNsSection 5: Industry 4.0 & Time Sensitive Networking Introduction to Industry 4.0 & Time Sensitive Networking Time Sensitive Networking (TSN) for Deterministic Communication TSN Architecture and its Components Importance of Time Synchronization in TSN Networks Time Aware Scheduling in TSN Networks TSN Sample WorkflowSection 6: 5G System (5GS) Interworking with TSN Introduction to 5G System (5GS) Interworking with TSN TSN-Application Function (AF) Network Exposure Function (NEF) Session Management Function (SMF) Policy and Charging Function (PCF) Access & Mobility Management Function (AMF) Device Side TSN Translator (DS-TT) & Network Side TSN Translator (NW-TT) Characteristics of 5G System as TSN BridgeSection 7: Synchronization in TSN and 5G Networks Introduction to Synchronization in TSN and 5G Networks Clock Flow in 5G Domain Clock Flow Between Two TSN Domains Calculation of Residence Time in 5G BridgeSection 8: 5G & TSN Interworking Procedures 5G & TSN Interworking Procedure Types 1. 5G TSN Bridge Detection 2. 5G TSN Bridge Informaion Reporting 3. TSN Traffic Scheduling on a 5G TSN Bridge Time Sensitive Communication Time Synchronisation Function (TSCTSF)

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