TS 38.300 v19.3.0 · TSG RAN — the group that specifies the radio
The whole document
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 · 49 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 actually is, in the shape its own document gives it
- 4.2 Functional Split 4. What NR actually is, in the shape its own document gives it
- 4.3 Network Interfaces 2. The six working groups and the line between them4. What NR actually is, in the shape its own document gives it
- 4.4 Radio Protocol Architecture 5. The layers a packet falls through, and the three states a device sits in
- 4.5 Multi-Radio Dual Connectivity 4. What NR actually is, in the shape its own document gives it
- 4.6 Radio Access Network Sharing 4. What NR actually is, in the shape its own document gives it
- 4.7 Integrated Access and Backhaul 4. What NR actually is, in the shape its own document gives it
- 4.8 Non-Public Networks 4. What NR actually is, in the shape its own document gives it
- 4.9 Network-Controlled Repeaters 4. What NR actually is, in the shape its own document gives it
- 4.10 Support of NR Femto nodes 4. What NR actually is, in the shape its own document gives it
- 4.11 Wireless Access Backhaul 4. What NR actually is, in the shape its own document gives it
5 Physical Layer 5,801 words · 45 of 45 clauses taught
- 5.1 Waveform, numerology and frame structure 2. The six working groups and the line between them4. What NR actually is, in the shape its own document gives it
- 5.2 Downlink 2. The six working groups and the line between them
- 5.3 Uplink 2. The six working groups and the line between them
- 5.4 Carrier aggregation 2. The six working groups and the line between them
- 5.5 Transport Channels 2. The six working groups and the line between them4. What NR actually is, in the shape its own document gives it
- 5.6 Access to Shared Spectrum 2. The six working groups and the line between them
- 5.7 Sidelink 2. The six working groups and the line between them
6 Layer 2 3,567 words · 26 of 26 clauses taught
- 6.1 Overview 2. The six working groups and the line between them5. The layers a packet falls through, and the three states a device sits in
- 6.2 MAC Sublayer 2. The six working groups and the line between them5. The layers a packet falls through, and the three states a device sits in
- 6.3 RLC Sublayer 2. The six working groups and the line between them5. The layers a packet falls through, and the three states a device sits in
- 6.4 PDCP Sublayer 2. The six working groups and the line between them5. The layers a packet falls through, and the three states a device sits in
- 6.5 SDAP Sublayer 2. The six working groups and the line between them5. The layers a packet falls through, and the three states a device sits in
- 6.6 L2 Data Flow 2. The six working groups and the line between them5. The layers a packet falls through, and the three states a device sits in
- 6.7 Carrier Aggregation 2. The six working groups and the line between them
- 6.8 Dual Connectivity 2. The six working groups and the line between them
- 6.9 Supplementary Uplink 2. The six working groups and the line between them
- 6.10 Bandwidth Adaptation 2. The six working groups and the line between them4. What NR actually is, in the shape its own document gives it5. The layers a packet falls through, and the three states a device sits in
- 6.11 Backhaul Adaptation Protocol Sublayer 2. The six working groups and the line between them
- 6.12 Multiple Transmit/Receive Point Operation 2. The six working groups and the line between them
7 RRC 3,116 words · 14 of 14 clauses taught
- 7.1 Services and Functions 2. The six working groups and the line between them5. The layers a packet falls through, and the three states a device sits in
- 7.2 Protocol States 2. The six working groups and the line between them5. The layers a packet falls through, and the three states a device sits in
- 7.3 System Information Handling 2. The six working groups and the line between them
- 7.4 Access Control 2. The six working groups and the line between them
- 7.5 UE Capability Retrieval framework 2. The six working groups and the line between them
- 7.6 Transport of NAS Messages 2. The six working groups and the line between them
- 7.7 Carrier Aggregation 2. The six working groups and the line between them
- 7.8 Bandwidth Adaptation 2. The six working groups and the line between them
- 7.9 UE Assistance Information 2. The six working groups and the line between them
- 7.10 Segmentation of RRC messages 2. The six working groups and the line between them
8 NG Identities 1,302 words · 1 of 5 clauses taught
9 Mobility and State Transitions 24,591 words · 2 of 60 clauses taught
10 Scheduling 3,331 words · 1 of 14 clauses taught
- 10.1 Basic Scheduler Operation 5. The layers a packet falls through, and the three states a device sits in
- 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 · 1 of 4 clauses taught
15 Self-Configuration and Self-Optimisation 8,709 words · 0 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