登录
首页 » Others » 比较全面、深入的5G核心网知识介绍

比较全面、深入的5G核心网知识介绍

于 2020-12-05 发布
0 265
下载积分: 1 下载次数: 1

代码说明:

5G设备系统厂家技术专家编写的培训材料,比较全面、深入地介绍了5G核心网的系列知识。3GPP 5G ongoing Releases5 G Phase1及 Phase2主要支持功能(SARe-15标准5G服务化移动性/会话/eMB特性56 Voice语音业务策略控制4G/5G高效用户面架构接入管理over nrEPS Fallback架构互操作路径选择Re-16标准5G服务化56到3的切片漫游及网络能力大数据分析mMTc架构增强SRVCC互操作开放功能标准化 URlLCE特性1Re15阶段关注最紧急的应用案例以满足市场需求,完成5G核心网整体架构及基本功能的定义,攴持·Re16阶段重点进行现有核心网架构的增强和完善,包括完整的 JeMBB,mMTC和RLC三个场景的内容eMBB业务基础特性、VoNR语音功能以及 EPS Fallback功能服务化架构及网络切片能力增强以及在未部署 VoltE情况下5G语音的连续性方案设计888DCONTENTS。,15G核心网标准5G核心网络架构∴∴∴∴35G核心网特性与关键技术8888.".∴∴∵∴∴∴,5G System ArchitectureNCEFNG-CP LNENREPCFUDMAF4G网络架构② Nef nmf Npce nudoNamfNsmf③3S1-MMESeaMMEPCRFAUSFAMFSMFMMES1LTE-UySGOperators IP以5G网络架构F-UTRANsErvIngUEPDNServicesGatewayGatewayRANS1-U(e.g. IMS, Pss etc.UEDIUPFDN,,。"。。,,相比EPC核心网架构,5G核心网变化①控制转发分离网络结构更加扁平化,控制面功能集中部署、用户面功能可以根据业务需可下沉到网络边缘,减少路由迂回;②控制面功能模块化设计将网元(NE)拆解为多个网络功能(NF)服务,网络功能服务可以独立扩展,按需编排和分布式部署;③服务化接口网元之间的点到点接→网终功能之间点到多点接口,各网终功能之间可以根据需求任意通讯,优化通讯路径,提高通信效率;④功能组件集中管理引入NRF,可以实现网终功能服务自动管理(自动注册/更新/去注册、自动发现和选择、状态检测、认证授权等);⑤统数据管理NF( Network FunctionAMF:唯一的N1和N2接凵终结点、注册及迕接管理、移动性及可达性管理、接入认证及安全锚点功能等;·sM":会话管理(建立、修改、释放)、卩P地址分配、选择和控制UP、终结会话部分NAs消息、策咯执行和Qos的控制部分、下行数据通知、确定会话SSC模式、计费等;PCF:支持统一的策略控制框架、提供策略规则到控制平面功能执行( SME AMF);支持面向ασS、计费、按需会话管理、按需接入及移动性管理制定策略;AUsF:认证服务器功能,为UE执行认证流程、保持安全上下文等;NRF:维护部署的NF实例信息,提供网络功能注册和发现功能,使得控制平面功能能够彼此发现和直接通信;UDM:存储用户签约数据、策略数据等·UPF:分纠路由和转发、分组检测、用户平面部分策略执行、流量使用量上报、UL-CL、分支点支持多宿主PDU会话、下行数据缓存等;NSsF:为UE选择服务的网络切片实例、决定为UE服务的 AMF Set或候选AMF表;·NEF:维护开放的网络服务列表、作为面向应用的入口功能等;BsF:实现5G用户会话绑定功能;· NWDAF:网络数据分析功能,负责采集并分析网络状态信息,并将网络状态分析信息通知/发布给订阅它的PCF和NSsF,供PCF决策和NSsF切片选择;Rel-15仅支持对切片负载级别的分析;8885G System Architecture for non-roaming scenario5G网络架构新增特性◆网络切片新增网络切片选择功能NSSF。网络可针对不同QOS业务,部署不同切片服务化架构通过网络功能重构,控制面形成多个独立网络功能,NF部署更加灵活控制面新增NRF,实现NF服务化管理功能、NF寻址、服务发现功能、网络切片选择控制面NF接口协议栈为HTTP,接口形式为RestfulAP的服务化接口◆边缘计算EC·∪PF只处理分组路由和转发,可下沉至网络边缘,支持灵活的本地业务应用5G边缘UPF完全由SMF选择、控制,解决了4G边缘计算在业务连续性、移动性、计费等方面存在的问题网络能力开放新增网络开放功能NEF,易于运营商部署更多业务应用为运营商提供增加业务收入的可能888D5G System Architecture for roaming scenario,,,,。。。分为本地疏导架构和归属地路由架构;在本地疏导架构(如图)中,漫游UE在拜访网络中3Gpp连接数据网络;在归属地路由NSSFNEFNRFPCFUDMNRF架构中,漫游UE在归属网络中NnssNorfNaNudeNorf连接数据网络:VSEPPhSEPP安全代理SEPP( Security EdgeNsmfNausNpcProtection Proxy)部署在PLMNAMFSMFAUSEPCFNEF网络边缘,作为非透明传输代理节点,通过N32接,保护N1N2N4VPLMNHPLMN归属地和拜访地之间控制面漫UE(R)ANUPFDN游消息的传递;实现拓扑隐藏,内部的网络拓扑结构对外不可见;SBI( Service Based Interface服务化接口N2传输协议HTP20ersN4∴序列化协议JSON,JSON相比现有Dⅰ ameter性能ANUPESME: :: :AMFPCUDMNRENSSSFNsmfNamfUdm::: Nhrf::: Ns上有差距,但通用性、可描述性、可读性更强服务化接口交换接口风格REST;基于HTTP/RESTFUL的通信接口NF之间生产者科消费者模式,交互模型为RQJSONRSP和 SUB-NOT|FY;Http 20TLS4G网中大量使用 Diameter协议,56网务今EPC网络有联互通需求,因此5G信令网中应攴持两种信令协议共存与互转的情况;服务化接口的优势i化接口设计:网络功能服务间的交互解耦,不同服务实例的接口可重用,无需逐按照业务流程定义接口消息优化参数传递:参数只在请求者和响应者间传递,无需跨越整个业务流程,提鬲实时性,可靠性支持网络功能的局部调整:功能更新明确到服务,只对请求者和服务者有影响,对体业务流程影响小,提高功能调整效率∴有利于业务流程的标准化推进:无耑重复榘构、接凵和流程等标准化过程,聚焦更新服务,甚至可以先开发再标准;888D…∵∵∴Control plane Protocol stack∴∴∴∴∴°。UE连接到网络中使用一个唯一的N1NAS连接,唯一的N1终结点位于AMF;N1接口上的NAS协议包括 NAS MM部分和 NAS SM部分;NAS MM消息包括注册管理和迕接管理的NAS消息;.: NAS SM支持处理UE和SMF之间的会话管理,支持PDU会话用户面的建立、修改和释放会话管理信令和短消息通过 NAS MM协议传输:

下载说明:请别用迅雷下载,失败请重下,重下不扣分!

发表评论

0 个回复

  • 漂亮年终总结ppt模板下载
    漂亮年终总结ppt模板下载适用于年终总结主题设计应用。
    2020-12-01下载
    积分:1
  • 基于win7(32位、64位)的snopt工具箱(包括使用说明)
    【实例简介】基于win7(32位、64位)的snopt工具箱,用于MATLAB解决非线性优化问题,下载附送snopt的使用说明
    2021-11-11 00:32:53下载
    积分:1
  • STM8S003单片机ADC多通道采样
    在STM8S003单片机最小系统上测试ADC多通道采样功能,同时采样AIN2、AIN3、AIN4、AIN5、AIN6通道输入值,并计算各通道采样平均值。
    2020-11-27下载
    积分:1
  • LabVIEW 的交通灯 
    LabVIEW做的交通灯程序,使用队的状态机和队列。
    2020-12-11下载
    积分:1
  • C语言 学生信息管理系统 课设计实验报告 源码
    C语言 学生信息管理系统 课程设计实验报告 源码
    2020-12-05下载
    积分:1
  • IEEE33节点
    IEEE33的标准格式,多用于验证实例.具体读取可以百度搜扫IEEE标准格式解析
    2020-12-06下载
    积分:1
  • Rohde&Schwarz 频谱仪操作手册(英文)
    Rohde&Schwarz 频谱仪操作手册(英文) 1145.5850系列全英文,详细的操作方式,各类使用技巧R&S FSHContentsContentsSpecificationsSafety InstructionsCertificate of qualitEC-Certificate of conformitySupport Center AddressList of R&S RepresentativesPutting into OperationFront view1.1Putting into Operation1.2Unpacking the Instrument1.2Setting up the InstrumentSwitching on the Spectrum Analyzer1.4Spectrum Analyzer Connectors1.5Screen SettingsQCountry-Specific Settings1.10Setting the Date and TimeSetting the date.1.11Setting the time1.1Charging the Battery......1.12Selecting the Instrument Default Setup1.13External Reference /External Trigger Switchover1.14Controlling the rF Attenuator1.15Using a Preamplifier…1.15PIN Entr1.17Connecting Printers.1.19Setting the Baud rate for Remote Control1.21Enabling Options1.21Checking the Installed options1.221145.5973.12E-15ContentsR&S FSH2 Getting Started2.Measurements on cw signals2.1Level measurement2Setting the Reference Level量‘面2.2Frequency Measurements2.3Harmonic Measurements of a sinewave Signal面面2.4Power Measurements Using the Power Sensor2.5Power and return loss measurements with the r&s FsH-z14 or the r&s FSH-Z444427Two-Port Transmission measurements2.9Measurement of return loss2.11Performing Distance-To-Fault Measurements...2.14Operation in Receiver Mode2.20Measuring the carrier-to-Noise power ratio2.Determining the Reference2.26Sts…2.26Selecting the reference channel2.27Entering the channel bandwidth of the reference channel2.27Selecting the unit for the reference...2.27Manually entering the reference2.27Automatic level adjustment2.27Measuring the Noise Power and Calculating Carrier Power /Noise Power.........2.28Selecting the result display2.28Frequency setting of the noise channel..2.28Setting the noise channel measurement bandwidth2.29Setting the C/N channel bandwidth2.29Automatic level adjustment2.29Correcting the displayed average noise level2.30Hiding the result display2.30Saving and Recalling Settings and Test Results2.31Saving Measurement Results2.31Saving Calibration Data2.32Recalling measurement results2.33Printing Out Measurement Results……2.341145.5973.122E-15R&S FSHContents3 Operation3.Screen LayoutScreen layout for spectrum-mode measurements without markers3.1Screen layout when the marker mode is selected3.2Entering Measurement ParametersEntering values and texts3.3Entering units3.4Menu overview.3.5Frequency entryFrequency span...Level setting…3.5Bandwidth settingTrace setting3.6Measurement functions3.7Marke3.10Save and print menu3.12Instrument setup3.12Status display3.12Menus in the Receiver Mode(option R&S FSH-K3)3.13Menu for 3GPP BTS Code domain Power Measurement (Option R&S FSH-K4)3.16Menu for Vector Voltmeter(Option R&S FSH-K2)3.161145.5973.12E-15ContentsR&S FSH4 Instrument functions4Instrument Default Setup4.1Status Display..................4.1Setting the Frequency4.2Entering the center frequency..4.2Setting a frequency offset4.2Entering the center-frequency step size4.3Entering the start and stop frequency4.4Working with channel tablesSetting the Span1面4.6Setting the Amplitude Parameters4.7Setting the reference levelEntering the display range94.9Entering the display unit4.9Entering the reference offset4.10Entering the input impedance.…………4.10Setting the Bandwidths4.11Resolution bandwidth4.11Video bandwidth4.13Setting the Sweep4.14Sweep time.4.15Sweep mode.4.15Trigger4.16Trace Settings4.19Trace mode∴4.19Detector4.20Trace memory…4.22Trace mathematics4.23Using the Markers4.24Automatic marker positioning .......4.25Using more than one marker at a time(multimarker mode).........,4.27Marker functions4.30Measuring the noise power density4.30Measuring the frequency4.31Measuring the filter bandwidth or the signal bandwidth4.32aF demodulation4.331145.5973.12E-15R&S FSHContentsUsing the dis play line…….….….….….….….….….…..….….……….…..34Setting and Using the Measurement Functions4.35Measuring the channel power of continuously modulated signals………………4.35Selecting the standard4.36Setting the reference level4.38Setting the channel bandwidth4.38Changing the spaPower displaPower measurements on TDMA signals4.42Selecting a standard∴4.42Setting the measurement time4.44Optimizing the reference level ..4.44Power readout4.45Setting the trigger4.45Measuring the occupied bandwidth4.46Selecting a standard4.47Setting the reference level4.48Setting the channel bandwidth4.49Entering the power percent to determine the occupied bandwidth4.50Displaying thupied bandwidth4.50Changing the spai1145.5973.12E-15ContentsR&S FSHMeasuring the Carrier-to-Noise Ratio.......4.52Determining the reference4.53Setting the reference channel4.53Setting the reference channel bandwidth……4.53Setting the analyzer reference level for the reference channel measurement4.54Manual reference mode4.54Inserting the c/N referenceUnits of the c/n reference4.55StandardsUSER Standard4.56User-specific standards4.56Predefined user-specific standards4.59Predefined user-specific standard Digital TX4.59Predefined user-specific standard ANalog tv mode4.60Predefined user-specific standard ctx4.60Measuring the noise channel power and calculating the carrier power/noise power.4.62Frequency setting of the noise channel………4.63Setting the noise channel bandwidth4.64Setting the C/N ratio channel bandwidth4.64Setting the reference level during noise channel measurement.4.65Selecting the c/ N result display..…,…4.65C/N measurement result display4.66Changing the span4.66Correction of inherent noise power4.67Using the R&S FSH in receiver mode4.68Setting the frequencySetting the reference level,,,。.。4.71Setting the bandwidth4.72Setting the detector4.73Setting the measurement time4.73Measurement on multiple frequencies or channels(scan)4.74Measurements using the power sensor4.76Connecting the power sensor……4.76Zeroing the power sensor.4.78Selecting the unit for the power readout4.79Setting the averaging time.……4.80Taking additional loss or gain into account4.81Measuring forward and reflected power∴4.82Zeroing the power sensor4.84Setting the power measurement weighting4.85Selecting the unit for the power readout4.86Taking additional attenuation into account4.881145.5973.126E-15R&S FSHContentsTwo-port measurements with the tracking generator489Measuring the transmission of two-ports4.91Vector transmission measurement494Measuring the transmission magnitude........4.96Measuring the transmission phase4.96Measuring the electrical length when measuring transmission面B国4.99Measuring the group delay when measuring transmission4.100Transmission measurement using the connected VSWR Bridge R&S FSH-Z3.. 4.102Sppectrum measurements with the VsWR Bridge R&s FSH-Z3 or R&S FSH-Z2connectedSetting for detecting the R&S FSH-Z3 in the transm. and spectr. measurement .. 4.104Supplying DC voltage to active DUTs4.105Reflection measurements4.105Scalar measurement of reflection4.106Vector measurement of reflection4.108Measuring the reflection magnitude4.111Measuring the reflection phase.……4.111Measuring the electrical length when measuring reflection4.112Displaying the reflection in the Smith chart4.113Measuring the group delay when measuring reflection4.118Selecting the calibration standards4.120Spectrum measurements with the vswr Bridge r&s FSH-Z3 or R&S FSH-z2connected4.121Settings for detection of the R&SFSH-z2andR&SFSH-Z3………4.122One-Port measurement of cable loss4.123Vector voltmeter.4.124Reflection measurements(S11)4.125Measuring transmission coefficients(S21)4.128Cable measurements4.134Cable selection∴4.135Selecting the frequency range…4.138Calibrating the test setupa.::::::.“14.139Locating cable faults by means of the marker function4.142Measuring spectrum and reflection4.145Further information∴4.146Setting the span4.146Selecting the center frequency.........∴4.147Measurement4.148Length measurement accuracy4.148Using limit Lines∴4.149Measurements with limit lines国面面4.151Definition range of limit lines4.152Data sets containing limit lines...4.1521145.5973.127ContentsR&S FSHMeasuring with Transducer Factors.4.153Unit for measurements with transducers4.156Reference level settings for measurements with transducers4.156Frequency range of transducer………4.156Data sets containing transducer factors4.156Field-Strength Measurement with Isotropic Antenna∴4.157Connecting the antenna to the R&S FSH4.157Measurement of the resultant field strength in a transm. channel with large bandwidth .......4.159Code Domain Power Measurement on 3GPP FDD Signals.4.166Saving and Loading Instrument Settings and Measurement Results4.173Saving results4.174Entering a data set name4.175Loading measurement results.4.175Deleting saved data sets4.176Deleting all data sets4.177Printing out Measurement Results4.178Measurements4.179How a spectrum analyzer operates…4.1791145.5973.12E-15
    2020-12-10下载
    积分:1
  • python搭建神经网络实现手写体识别源码+数据集
    用python搭建神经网络,详细代码步骤,入门机器学习和学习神经网络
    2020-06-30下载
    积分:1
  • GA求解PID优化的MATLAB代码
    用遗传算法求解PID参数优化MATLAB源程序
    2020-12-08下载
    积分:1
  • amCap工具源码
    该压缩包,为AMcap软件的源码,提供给各位码农们,学习directshow学习专用, 可以用于裁剪应用,获取摄像头的输出图像
    2020-12-09下载
    积分:1
  • 696518资源总数
  • 106148会员总数
  • 10今日下载