Category: 2022

NGMN-6G-Use-Cases-and-Analysis_Cover

6G USE CASES AND ANALYSIS

The identification of 6G use cases is key to predicting major trends in future usage scenarios and will help to steer the needs and requirements for future generational change. Therefore, operators, technology suppliers and academic advisors in NGMN joined forces and contributed their views on which 6G use cases they predict will emerge in the future decade. The result is published in NGMN’s “6G Use Cases and Analysis” White Paper.

20220218_NGMN_Experience-on-Cloud-Native-Adoption

Experience on Cloud Native Adoption

This document reports experience from the NGMN Partners on the adoption and the studies currently ongoing on Cloud Native. NGMN, at the beginning of 2021, released a White Paper providing an overall view on the Cloud Native evolution. That document is about a long journey that is still ongoing and foresees different steps to reach full maturity. The intention of this document is to highlight some of the areas that are on the spotlight now, and the steps that the Partners are currently doing in respect to that journey.

NGMN 5G TDD Uplink White Paper v1.0

5G TDD Uplink v1.0

This White Paper contemplates the challenges for Vertical Industries to achieve sufficient uplink throughput or cell capacity and low enough latency for their industrial use cases, when using 5G TDD bands for the realization of those use cases. After looking into the problem, various technical solutions are being considered, some of them providing solutions for the management of interference between base stations or mobile handsets, when deviating frame structures are being used to support the industries’ requirements. The document concludes with specific recommendations to regulators and mobile industry partners who want to support the industry with adequate solutions.

Metering for Sustainable Networks

Green Future Networks – Metering for Sustainable Networks v1.0

This White Paper’s recommendations are:

  • To identify and understand the behaviour of energy intensive or under-utilized parts of the network and in order to optimize and manage them in an energy efficient way it is recommended to deploy metering. Metering with more granular measurements will enable to check the energy performance of equipment in real time condition as well as to improve and promote the use of renewable energy source in a more optimized way.
  • It is recommended to deploy metering at the network and technical sites to measure the energy consumption and other relevant parameters such as temperature and humidity of the active equipment e.g. radio, backhauling and core equipment.
  • Standardized metering shall be defined with generic unified architecture for data collection, site internal communication architecture ideally equipped with higher level intelligent Next Generation Control Unit or Data Gathering Unit. In addition, measurement parameters with given accuracy as well as data collection and interfaces, including virtualized and NFV environments should be standardized