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WORLD'S FIRST LEO NTN-DRONE DEMO
5G Fronthaul over Satellite telecom traning course

5G Fronthaul over Satellite

5G Fronthaul over Satellite content discusses 5G fronthaul solution over LEO (typical and/or cube satellites) and GEO satellite, analyzing the 5G over satellite fronthaul link budget planning and design
Aimed At
Course Review
Why Choose this Course
You will learn
Course Outline
Training Format
FAQ's

Customer Tailored

We can tailor the included topics,tech level,and duration of this course right to your team’s technical requirements and needs. - MCNS offers courses to companies, institutions, departments etc and not to individuals as per open courses.
Aimed At

5G Fronthaul over Satellite  is mainly aimed at a technical audience. It is suitable for technical professionals, RAN operators, Radio planning engineers, RAN optimization engineers, satellite engineers and experts, Research Institutes, defense sector, who currently are or will be involved in 5G frontaul over satellite deployments. Moreover it is useful for Broadcasting companies utilizing satellites as well as satellite operators wishing to move towards more flexible 5G deployments for remote coverage areas (deserts, oceans etc).

  • Prerequisites: Those wishing to take this course should have a good understanding of 5G technology as well as Satellite communication basic principles.
Course Review

This training course is designed for engineers with knowledge of Satellite Communications and 5G, who desire to acquire greater knowledge in the areas of 5G fronthaul network Planning over Satellite. It offers an understanding of the network deployment opportunities, challenges, and risks that’s needed to exploit and deploy the 5G fronthaul over satellite from the throughput perspective up to corresponding timers and delays trying to emphasize on parameter configurations and performance optimization. Participants will be also exposed to link power budget, propagation delays, and free space loss. The course is supported by proper excel dimensioning (calculator) files for practical exercises and case studies.

Course Benefits for individuals (Professionals)
  • Understanding 5G deployment over satellite requirements
  • Explore 5G fronthaul over satellite coverage and capacity principles
  • Learn how to plan for 5G fronthaul Non Terrestrial Networks (NTN) coverage and capacity
  • Introduce engineers into the fundamentals of satellite communications with reference to 5G and satellite use cases for 5G
  • Learn how to configure basic fronthaul parameters for NTN deployment
  • Practice on 5G fronthaul over satellite capacity and coverage planning tools (i.e. excel calculators examples) through practical exercises
Course Benefits for your Organization
  • Equip organization engineers with the necessary knowledge to accomplish difficult and complex tasks related to 5G fronthaul planning over satellite.
  • Keep ahead of competitors in offering new user cases and perspectives for 5G over satellite scenarios
  • Identify new revenue streams that can be enabled through 5G over satellite
  • Prepare for future network expansions and quality performance optimization
You will learn
The key points you will learn through this course

5G NR Technology Review

Introduction to Satellite Communications

5G fronthaul Design over Satellite

Course Outline
A short brief of your program details & schedule

5G architectures and technology

  • 5G NR NSA and SA architectures
  • 5G EPC architecture
  • CUPS split
  • 5GC architecture and slicing
  • 5GS implementations

5G RAN fronthaul interface Overview

  • 5G gNodeB interfaces
  • 5G NR Air interface
  • Active Antenna Units (AAU)
  • CU_DU split architectures
  • F1 & E1 interfaces
  • F1 & E1 protocols & messages
  • 5G NR Lower Layer split
  • 5G NR Higher Layer split
  • 5G Virtualized RAN (vRAN)
  • CPRI & eCPRI
  • 5G Service: eMBB
  • Excel file calculator including protocol layer parameters and timers

Satellite Communication Principles

  • Satellite Frequency Spectrum and Propagation
  • Satellite Orbits: LEO, MEO, GEO
  • Satellite Limitations: Propagation Delay
  • Large Earth Stations and VSATs
  • Satellite Orbit and distance to Earth Station

5G over Satellite Architectures

  • 3GPP standards: 3GPP RAN1, “3GPP TR 38.811
  • H2020 5GPPP project “SaT5G”: Satellite and Terrestrial Network for 5G
  • 5G NR support for Non Terrestrial Networks
  • Transparent satellite-based NG-RAN architecture
  • Regenerative satellite-based NG-RAN architectures
  • 5G fixed fronthaul
  • Satellite fronthaul to individual cell towers

5G over Satellite Channel Modeling

  • What is a Satellite Channel model ?– general principles
  • Non-Line of Sight and Rayleigh modeling
  • LoS and Rice modeling
  • Doppler effects and channel models
  • Fading and atmospheric effects
  • Case Study I: 5G over Satellite channel model BLER vs. SINR
  • Case Study II: E1 & F1 over Satellite
  • Case Study III: eCPRI & CPRI over satellite performance
  • Exercise: Channel model calculations using Excel calculator

5G fronthaul over Satellite Link Budget analysis

  • Satellite Signal Propagation
  • Atmosphere effects in signal propagation
  • Mathematical approach for atmosphere scattering margin
  • GEO Link Power Budget: Path Loss and EIRP
  • GEO DL/UL Cascaded Power amplifiers
  • GEO Footprints: Global, Regional and Narrow Spot Beams
  • LEO Link Power Budget: Path Loss and EIRP
  • LEO DL/UL Cascaded Power amplifiers
  • LEO Footprints: Global, Regional and Narrow Spot Beams
  • FR2 Pathloss models
  • Case Study: 5G fronthaul over Satellite Link budget analysis
  • Exercise: Link Budget fronthaul calculations using Excel calculator

5G over Satellite Capacity planning

  • GEO satellite capacity (#users) estimation
  • GEO satellite throughput estimation
  • LEO satellite capacity (#users) estimation
  • LEO satellite throughput estimation
  • Case Study: 5G fronthaul over Satellite capacity analysis
  • Exercise: Throughput estimation using Excel calculator
Training Format

Instructor-Led Training

On-Site Classroom: 1 day

Web delivered (Virtual): 1 day

Excellent and descriptive course material (pdf file) will be provided

FAQ's

How is 5G low latency services (URLLC) feasible over satellite?

Simply it is not feasible!!! Considering several scenarios of low latency communications the expected latency is far below 10 ms, which is far beyond the expectations of satellite latency figures. For such scenarios it is better to use High Altitude Stratospheric Platforms (HASP).

Why using 5G fronthaul over satellite?

Satellite fronthaul now makes it possible to extend service to communities in rural areas, cost effectively than fibre or microwave connectivity. Moreover it can be used for emergency networks and special forces networks in case of natural or warfare disasters

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