TS 38.300 v19.3.0 · TSG RAN — the group that specifies the radio
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617 clauses in the order they appear. The bar shows how much text each part holds. Open one to see what is inside it and which chapter teaches it.
3 Abbreviations and Definitions 3,934 words · 0 of 3 clauses taught
4 Overall Architecture and Functional Split 6,168 words · 16 of 50 clauses taught
- 4.1 Overall Architecture 1. What TSG RAN is, and why the radio gets a group of its own4. What NR is — the shape of the 5G radio network
- 4.2 Functional Split 1. What TSG RAN is, and why the radio gets a group of its own4. What NR is — the shape of the 5G radio network8. Where the radio network meets the core13. Where RAN meets the groups that write the rest of 3GPP
- 4.3 Network Interfaces 4. What NR is — the shape of the 5G radio network
- 4.4 Radio Protocol Architecture
- 4.5 Multi-Radio Dual Connectivity 4. What NR is — the shape of the 5G radio network
- 4.6 Radio Access Network Sharing 4. What NR is — the shape of the 5G radio network
- 4.7 Integrated Access and Backhaul
- 4.8 Non-Public Networks 4. What NR is — the shape of the 5G radio network
- 4.9 Network-Controlled Repeaters
- 4.10 Support of NR Femto nodes
- 4.11 Wireless Access Backhaul
5 Physical Layer 5,801 words · 2 of 45 clauses taught
- 5.1 Waveform, numerology and frame structure 4. What NR is — the shape of the 5G radio network
- 5.2 Downlink
- 5.3 Uplink
- 5.4 Carrier aggregation
- 5.5 Transport Channels 2. The six working groups, and where the line between them runs4. What NR is — the shape of the 5G radio network
- 5.6 Access to Shared Spectrum
- 5.7 Sidelink
6 Layer 2 3,567 words · 17 of 26 clauses taught
- 6.1 Overview 2. The six working groups, and where the line between them runs5. The radio protocol stack, sublayer by sublayer
- 6.2 MAC Sublayer 5. The radio protocol stack, sublayer by sublayer
- 6.3 RLC Sublayer 5. The radio protocol stack, sublayer by sublayer
- 6.4 PDCP Sublayer 5. The radio protocol stack, sublayer by sublayer
- 6.5 SDAP Sublayer 5. The radio protocol stack, sublayer by sublayer
- 6.6 L2 Data Flow 5. The radio protocol stack, sublayer by sublayer
- 6.7 Carrier Aggregation 5. The radio protocol stack, sublayer by sublayer
- 6.8 Dual Connectivity 5. The radio protocol stack, sublayer by sublayer
- 6.9 Supplementary Uplink
- 6.10 Bandwidth Adaptation 5. The radio protocol stack, sublayer by sublayer
- 6.11 Backhaul Adaptation Protocol Sublayer
- 6.12 Multiple Transmit/Receive Point Operation
7 RRC 3,116 words · 5 of 14 clauses taught
- 7.1 Services and Functions 2. The six working groups, and where the line between them runs5. The radio protocol stack, sublayer by sublayer
- 7.2 Protocol States 6. The three states a device sits in
- 7.3 System Information Handling
- 7.4 Access Control
- 7.5 UE Capability Retrieval framework 14. Conformance testing, and why a separate group writes the exam
- 7.6 Transport of NAS Messages 8. Where the radio network meets the core13. Where RAN meets the groups that write the rest of 3GPP
- 7.7 Carrier Aggregation
- 7.8 Bandwidth Adaptation
- 7.9 UE Assistance Information
- 7.10 Segmentation of RRC messages
8 NG Identities 1,302 words · 3 of 5 clauses taught
- 8.1 UE Identities 6. The three states a device sits in8. Where the radio network meets the core
- 8.2 Network Identities 8. Where the radio network meets the core
- 8.3 User Data Transport on the CN-RAN Interface 8. Where the radio network meets the core
- 8.4 NR sidelink communication, V2X sidelink communication and Ranging/Sidelink positioning related identities
9 Mobility and State Transitions 24,591 words · 17 of 60 clauses taught
10 Scheduling 3,331 words · 1 of 14 clauses taught
- 10.1 Basic Scheduler Operation 5. The radio protocol stack, sublayer by sublayer
- 10.2 Downlink Scheduling
- 10.3 Uplink Scheduling
- 10.4 Measurements to Support Scheduler Operation
- 10.5 Rate Control
- 10.6 Activation/Deactivation Mechanism
- 10.7 E-UTRA-NR Cell Resource Coordination
- 10.8 Cross Carrier Scheduling
- 10.9 IAB Resource Configuration
- 10.10 Autonomous Denial for IDC
- 10.11 Multi-cell scheduling by a single DCI
12 QoS 1,358 words · 1 of 3 clauses taught
13 Security 1,544 words · 3 of 4 clauses taught
15 Self-Configuration and Self-Optimisation 8,709 words · 1 of 61 clauses taught
16 Verticals Support 47,400 words · 0 of 266 clauses taught
- 16.1 URLLC
- 16.2 IMS Voice
- 16.3 Network Slicing
- 16.4 Public Warning System
- 16.5 Emergency Services
- 16.6 Stand-Alone NPN
- 16.7 Public Network Integrated NPN
- 16.8 Support for Time Sensitive Communications
- 16.9 Sidelink
- 16.10 Multicast and Broadcast Services
- 16.11 Minimization of Service Interruption
- 16.12 Sidelink Relay
- 16.13 Support of Reduced Capability (RedCap) and enhanced Reduced Capability (eRedCap) NR devices
- 16.14 Non-Terrestrial Networks
- 16.15 eXtended Reality Services
- 16.16 ECN marking for L4S and congestion information exposure
- 16.17 Support for TSN enabled Transport Network
- 16.18 Support for Aerial UE Communication
- 16.19 Support for Air to Ground Networks
- 16.20 Support of AI/ML for NG-RAN
- 16.21 Multi-path Relay
- 16.22 Support of 2Rx XR devices
- 16.23 Support of Ambient IoT
17 Interference Management 913 words · 0 of 3 clauses taught
18 Small Data Transmission 2,730 words · 1 of 6 clauses taught
20 Support for Multi-USIM devices 833 words · 0 of 5 clauses taught
21 Application Layer Measurement Collection 2,954 words · 0 of 13 clauses taught
22 Support of AI/ML for NR Air Interface 1,137 words · 0 of 12 clauses taught
23 SBFD 606 words · 0 of 3 clauses taught
Annex A QoS Handling in RAN 1,251 words · 2 of 7 clauses taught
- A.1 PDU Session Establishment 8. Where the radio network meets the core13. Where RAN meets the groups that write the rest of 3GPP
- A.2 New QoS Flow with RQoS 8. Where the radio network meets the core
- A.3 New QoS Flow with Explicit RRC Signalling
- A.4 New QoS Flow with Explicit NAS Signalling
- A.5 Release of QoS Flow with Explicit Signalling
- A.6 UE Initiated UL QoS Flow