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5G aims to be the one global mobile communications standard for all applications and all user groups. 5G offers the highest performance in terms of data rate, latency, QoS and security.
What is good can always be improved. This is why 5G standardization is subject to constant evolution. New ideas, requirements, possible applications and optimization options are discussed and refined within 3GPP and adopted every 1-2 years in a new 3GPP release.
This 5G course shows the successive development of 5G towards the next generation of mobile communications (6G). The latest developments and trends are discussed. Building on the 5G start with Release 15, key evolutionary steps of the radio interface, network and services in Releases 16 and 17 as well as plans for Release 18 will be discussed and finally an outlook on 6G will be given.
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Course Contents
-
- 5G Highlights Release 16, 17, 18 & 19 / 5G-Advanced
- 5G QoS concept (5QI)
- Reinforcement of the 5G radio interface New Radio
- New 5G frequencies, frequency ranges (NR > 52.6 GHz) & bands
- More bandwidth, higher peak rates
- Shorter latency times
- New Radio Unlicensed NR-U
- Higher Order Modulation (1024QAM)
- Multiple Transmission & Reception Points mTRP
- Dynamic Spectrum Sharing DSS
- Coverage Enhancements: more range, better coverage
- Improved handover types
- Enhanced URLLC
- Evolution of the network architecture
- 5G satellite systems for global 5G: non-terrestrial networks
- Convergence of networks: 5G + WLAN + fixed network
- Non-3GPP Access / WLAN vs. 5G
- Machine communication with 5G: Cellular IoT/Industrial IoT
- Ambient IoT
- RedCap & eRedCap UEs (Rel. 17 & 18)
- Green 5G
- Artificial Intelligence AI/Machine Learning ML
- Private 5G networks (P5G/campus networks) & operating models
- Positioning: localization in 5G
- Time Sensitive Communication TSC
- 5G for autonomous driving: eV2X
- 5G BOS radio/5G public safety networks
- Future Railway Mobile Communication System FRMCS
- 5G for air traffic: ATG
- 5G for drone use UAS/UAV
- Evolutionary stages from 5G to 6G
- 6G outlook (IMT-2030 and beyond)
- 6G frequency planning
- 6G research & funding programs
The detailed digital documentation package, consisting of an e-book and PDF, is included in the price of the course.
Premium Course Documents
In addition to the digital documentation package, the exclusive Premium Print Package is also available to you.
- High-quality color prints of the ExperTeach documentation
- Exclusive folder in an elegant design
- Document pouch in backpack shape
- Elegant LAMY ballpoint pen
- Practical notepad
The Premium Print Package can be added during the ordering process for € 175,- plus VAT (only for classroom participation). -
Target Group
-
This 5G training is aimed at anyone who is already familiar with initial 5G (3GPP Release 15) and now wants to learn about the further evolution of 5G towards 6G, new trends, features and development steps.
-
Knowledge Prerequisites
-
Good 5G knowledge, according to the course 5G Mobile Communications - Architecture & Radio for Public & Private Networks, is required.
1 | Warming Up: 5G Summary |
1.1 | 5G Intro |
1.1.1 | 5G Use Cases |
1.1.2 | 5G Betreiber |
1.1.3 | Der 5G Zeitplan |
1.2 | 5G Netzwerk Architektur & Aufgaben |
1.2.1 | 5G User Equipment |
1.2.2 | 5G Radio Access Network |
1.2.3 | 5G Core Network |
1.2.4 | Network Slicing |
1.2.5 | Mobile Edge Computing |
1.2.6 | 5G Sicherheit |
1.3 | 5G QoS: PDU Session & QoS Flow |
1.3.1 | PDU Session |
1.3.2 | QoS Architektur in 5G |
1.3.3 | QoS Architektur in 5G |
1.3.4 | QoS Architektur in 5G |
1.4 | 5G Funkschnittstelle, Frequenzen & Lizenzen |
1.4.1 | 5G Spektrum/Frequenzbänder |
1.4.2 | 5G Lizenzen in Deutschland |
2 | 5G Evolutionspfad |
2.1 | Die ersten 5G Evolutionsschritte |
2.1.1 | 3GPP Release 16 Highlights |
2.1.2 | 3GPP Release 17 Highlights |
2.2 | 5G Advanced: 5G Evolution in Richtung 6G |
2.2.1 | Release 18 Pläne |
3 | New Radio Enhancements |
3.1 | Neue Frequenzen |
3.2 | New Radio - unlizenziert |
3.2.1 | Unlizenzierte Frequenzen |
3.2.2 | WLAN - Konkurrent & Komplement |
3.2.3 | LTE-LAA & NR-U |
3.3 | Higher Order Modulation |
3.4 | Bandbreite, Peak Rate & Latenzzeit |
3.4.1 | NR Bandbreiten |
3.4.2 | Höhere Peak Raten (Rel. 17) |
3.4.3 | Kürzere Latenzzeiten (Rel. 17) |
3.5 | Massive MIMO Enhancement |
3.6 | Coverage Enhancements |
3.7 | Dynamic Spectrum Sharing |
4 | Network & Device Enhancements |
4.1 | Konvergente Netze: 5G mit WLAN & Festnetz |
4.2 | 5G und das Internet of Things |
4.3 | RedCap UEs |
4.4 | NG-RAN Evolution/Optimierung |
4.4.1 | Backhaul-Option: IAB |
4.4.2 | Open RAN |
4.4.3 | Enhanced URLLC Features |
4.5 | Weltweites 5G: Non Terrestrial Networks |
4.6 | Automatisierte Netzwerk Planung & Optimierung |
4.6.1 | SON in 5G |
4.6.2 | Network Data Analytics Function NWDAF |
4.7 | AI/ML im NG-RAN |
4.8 | Green 5G: Energie-Einsparungen |
5 | Industrial IoT & Private 5G Netzwerke |
5.1 | 5G für alle Wirtschaftszweige |
5.2 | Industrial IoT |
5.3 | 5G Campus/Private 5G Netzwerke |
5.3.1 | Private 5G Netze vs. Festnetz & WLAN |
5.3.2 | Private vs. Öffentliche Netzwerke |
5.3.3 | Private 5G Netzwerke - Varianten |
5.3.4 | SNPN - Isoliertes Privates Netzwerk |
5.3.5 | Privates 5G Netzwerk, teilweise integriert |
5.3.6 | Virtuelles Privates Netzwerk: Network Slice |
5.4 | LAN-type Services |
5.5 | Konvergente Kommunikations-Infrastruktur |
5.6 | 5G QoS für BOS & 5G Campus |
5.7 | Positionsbestimmung mit 5G |
5.7.1 | Anforderungen & 3GPP Roadmap |
5.7.2 | 5GS Architektur: Funktionen für Positioning |
5.7.3 | UE Positioning Methoden |
5.7.4 | Positioning Summary |
5.8 | Spektrum für Privates 5G |
5.9 | Time Sensitive Networking TSN |
5.9.1 | Time Sensitive Communication in 5G |
6 | Neue Einsatzgebiete & Dienste |
6.1 | Überblick: Neue Einsatzgebiete & Dienste |
6.2 | 5G für autonomes Fahren: C-V2X |
6.3 | 5G für BOS/Public Safety Networks |
6.3.1 | Proximity Services ProSe |
6.3.2 | Multicast & Broadcast Services MBS |
6.3.3 | Mission-Critical Services |
6.4 | 5G für die Bahn: FRMCS |
7 | Zusammenfassung & 6G Ausblick |
7.1 | Zusammenfassung |
7.2 | 6G Ausblick |
-
Classroom training
- Do you prefer the classic training method? A course in one of our Training Centers, with a competent trainer and the direct exchange between all course participants? Then you should book one of our classroom training dates!
-
Hybrid training
- Hybrid training means that online participants can additionally attend a classroom course. The dynamics of a real seminar are maintained, and the online participants are able to benefit from that. Online participants of a hybrid course use a collaboration platform, such as WebEx Training Center or Saba Meeting. To do this, a PC with browser and Internet access is required, as well as a headset and ideally a Web cam. In the seminar room, we use specially developed and customized audio- and video-technologies. This makes sure that the communication between all persons involved works in a convenient and fault-free way.
-
Online training
- You wish to attend a course in online mode? We offer you online course dates for this course topic. To attend these seminars, you need to have a PC with Internet access (minimum data rate 1Mbps), a headset when working via VoIP and optionally a camera. For further information and technical recommendations, please refer to.
-
Tailor-made courses
-
You need a special course for your team? In addition to our standard offer, we will also support you in creating your customized courses, which precisely meet your individual demands. We will be glad to consult you and create an individual offer for you.

-
5G aims to be the one global mobile communications standard for all applications and all user groups. 5G offers the highest performance in terms of data rate, latency, QoS and security.
What is good can always be improved. This is why 5G standardization is subject to constant evolution. New ideas, requirements, possible applications and optimization options are discussed and refined within 3GPP and adopted every 1-2 years in a new 3GPP release.
This 5G course shows the successive development of 5G towards the next generation of mobile communications (6G). The latest developments and trends are discussed. Building on the 5G start with Release 15, key evolutionary steps of the radio interface, network and services in Releases 16 and 17 as well as plans for Release 18 will be discussed and finally an outlook on 6G will be given.
-
Course Contents
-
- 5G Highlights Release 16, 17, 18 & 19 / 5G-Advanced
- 5G QoS concept (5QI)
- Reinforcement of the 5G radio interface New Radio
- New 5G frequencies, frequency ranges (NR > 52.6 GHz) & bands
- More bandwidth, higher peak rates
- Shorter latency times
- New Radio Unlicensed NR-U
- Higher Order Modulation (1024QAM)
- Multiple Transmission & Reception Points mTRP
- Dynamic Spectrum Sharing DSS
- Coverage Enhancements: more range, better coverage
- Improved handover types
- Enhanced URLLC
- Evolution of the network architecture
- 5G satellite systems for global 5G: non-terrestrial networks
- Convergence of networks: 5G + WLAN + fixed network
- Non-3GPP Access / WLAN vs. 5G
- Machine communication with 5G: Cellular IoT/Industrial IoT
- Ambient IoT
- RedCap & eRedCap UEs (Rel. 17 & 18)
- Green 5G
- Artificial Intelligence AI/Machine Learning ML
- Private 5G networks (P5G/campus networks) & operating models
- Positioning: localization in 5G
- Time Sensitive Communication TSC
- 5G for autonomous driving: eV2X
- 5G BOS radio/5G public safety networks
- Future Railway Mobile Communication System FRMCS
- 5G for air traffic: ATG
- 5G for drone use UAS/UAV
- Evolutionary stages from 5G to 6G
- 6G outlook (IMT-2030 and beyond)
- 6G frequency planning
- 6G research & funding programs
The detailed digital documentation package, consisting of an e-book and PDF, is included in the price of the course.
Premium Course Documents
In addition to the digital documentation package, the exclusive Premium Print Package is also available to you.
- High-quality color prints of the ExperTeach documentation
- Exclusive folder in an elegant design
- Document pouch in backpack shape
- Elegant LAMY ballpoint pen
- Practical notepad
The Premium Print Package can be added during the ordering process for € 175,- plus VAT (only for classroom participation). -
Target Group
-
This 5G training is aimed at anyone who is already familiar with initial 5G (3GPP Release 15) and now wants to learn about the further evolution of 5G towards 6G, new trends, features and development steps.
-
Knowledge Prerequisites
-
Good 5G knowledge, according to the course 5G Mobile Communications - Architecture & Radio for Public & Private Networks, is required.
1 | Warming Up: 5G Summary |
1.1 | 5G Intro |
1.1.1 | 5G Use Cases |
1.1.2 | 5G Betreiber |
1.1.3 | Der 5G Zeitplan |
1.2 | 5G Netzwerk Architektur & Aufgaben |
1.2.1 | 5G User Equipment |
1.2.2 | 5G Radio Access Network |
1.2.3 | 5G Core Network |
1.2.4 | Network Slicing |
1.2.5 | Mobile Edge Computing |
1.2.6 | 5G Sicherheit |
1.3 | 5G QoS: PDU Session & QoS Flow |
1.3.1 | PDU Session |
1.3.2 | QoS Architektur in 5G |
1.3.3 | QoS Architektur in 5G |
1.3.4 | QoS Architektur in 5G |
1.4 | 5G Funkschnittstelle, Frequenzen & Lizenzen |
1.4.1 | 5G Spektrum/Frequenzbänder |
1.4.2 | 5G Lizenzen in Deutschland |
2 | 5G Evolutionspfad |
2.1 | Die ersten 5G Evolutionsschritte |
2.1.1 | 3GPP Release 16 Highlights |
2.1.2 | 3GPP Release 17 Highlights |
2.2 | 5G Advanced: 5G Evolution in Richtung 6G |
2.2.1 | Release 18 Pläne |
3 | New Radio Enhancements |
3.1 | Neue Frequenzen |
3.2 | New Radio - unlizenziert |
3.2.1 | Unlizenzierte Frequenzen |
3.2.2 | WLAN - Konkurrent & Komplement |
3.2.3 | LTE-LAA & NR-U |
3.3 | Higher Order Modulation |
3.4 | Bandbreite, Peak Rate & Latenzzeit |
3.4.1 | NR Bandbreiten |
3.4.2 | Höhere Peak Raten (Rel. 17) |
3.4.3 | Kürzere Latenzzeiten (Rel. 17) |
3.5 | Massive MIMO Enhancement |
3.6 | Coverage Enhancements |
3.7 | Dynamic Spectrum Sharing |
4 | Network & Device Enhancements |
4.1 | Konvergente Netze: 5G mit WLAN & Festnetz |
4.2 | 5G und das Internet of Things |
4.3 | RedCap UEs |
4.4 | NG-RAN Evolution/Optimierung |
4.4.1 | Backhaul-Option: IAB |
4.4.2 | Open RAN |
4.4.3 | Enhanced URLLC Features |
4.5 | Weltweites 5G: Non Terrestrial Networks |
4.6 | Automatisierte Netzwerk Planung & Optimierung |
4.6.1 | SON in 5G |
4.6.2 | Network Data Analytics Function NWDAF |
4.7 | AI/ML im NG-RAN |
4.8 | Green 5G: Energie-Einsparungen |
5 | Industrial IoT & Private 5G Netzwerke |
5.1 | 5G für alle Wirtschaftszweige |
5.2 | Industrial IoT |
5.3 | 5G Campus/Private 5G Netzwerke |
5.3.1 | Private 5G Netze vs. Festnetz & WLAN |
5.3.2 | Private vs. Öffentliche Netzwerke |
5.3.3 | Private 5G Netzwerke - Varianten |
5.3.4 | SNPN - Isoliertes Privates Netzwerk |
5.3.5 | Privates 5G Netzwerk, teilweise integriert |
5.3.6 | Virtuelles Privates Netzwerk: Network Slice |
5.4 | LAN-type Services |
5.5 | Konvergente Kommunikations-Infrastruktur |
5.6 | 5G QoS für BOS & 5G Campus |
5.7 | Positionsbestimmung mit 5G |
5.7.1 | Anforderungen & 3GPP Roadmap |
5.7.2 | 5GS Architektur: Funktionen für Positioning |
5.7.3 | UE Positioning Methoden |
5.7.4 | Positioning Summary |
5.8 | Spektrum für Privates 5G |
5.9 | Time Sensitive Networking TSN |
5.9.1 | Time Sensitive Communication in 5G |
6 | Neue Einsatzgebiete & Dienste |
6.1 | Überblick: Neue Einsatzgebiete & Dienste |
6.2 | 5G für autonomes Fahren: C-V2X |
6.3 | 5G für BOS/Public Safety Networks |
6.3.1 | Proximity Services ProSe |
6.3.2 | Multicast & Broadcast Services MBS |
6.3.3 | Mission-Critical Services |
6.4 | 5G für die Bahn: FRMCS |
7 | Zusammenfassung & 6G Ausblick |
7.1 | Zusammenfassung |
7.2 | 6G Ausblick |
-
Classroom training
- Do you prefer the classic training method? A course in one of our Training Centers, with a competent trainer and the direct exchange between all course participants? Then you should book one of our classroom training dates!
-
Hybrid training
- Hybrid training means that online participants can additionally attend a classroom course. The dynamics of a real seminar are maintained, and the online participants are able to benefit from that. Online participants of a hybrid course use a collaboration platform, such as WebEx Training Center or Saba Meeting. To do this, a PC with browser and Internet access is required, as well as a headset and ideally a Web cam. In the seminar room, we use specially developed and customized audio- and video-technologies. This makes sure that the communication between all persons involved works in a convenient and fault-free way.
-
Online training
- You wish to attend a course in online mode? We offer you online course dates for this course topic. To attend these seminars, you need to have a PC with Internet access (minimum data rate 1Mbps), a headset when working via VoIP and optionally a camera. For further information and technical recommendations, please refer to.
-
Tailor-made courses
-
You need a special course for your team? In addition to our standard offer, we will also support you in creating your customized courses, which precisely meet your individual demands. We will be glad to consult you and create an individual offer for you.
