ETSI

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Digital Enhanced Cordless Telecommunications (DECT); Study on URLLC use cases of vertical industries for DECT evolution and DECT-2020

Presents a study of use cases and vertical scenarios for Ultra-Reliable Low-Latency Communications (URLLC) intended to be used as base requirements for evolving DECT. Applications / Use Cases include Home and Building Automation, including Smart Living; Industry automation - Factories of the Future, Industry 4.0; Mobile robots

ETSI TR 103 515

Sustainable Digital Multiservice Cities (SDMC): Broadband Deployment and Energy Management: Part 1: Overview, common and generic aspects of societal and technical pillars for sustainability

The goal is to introduce the common and generic aspects of the societal and technical pillars to achieve sustainability objectives behind the deployment of smart new services within the IP network of a single city or an association of cities administratively clustered.

ETSI TS 110 174-1 V1.1.1 (2018-12)

Sustainable Digital Multiservice Communities: Broadband Deployment and Energy Management: Part 2: Multiservice Networking Infrastructure and Associated Street Furniture

The present document addresses the opportunities and challenges offered by the use of lamp-posts to provide facilities supporting services required by sustainable digital multiservice cities and communities.

ETSI TS 110 174-2-2 V1.2.1 (2020-11)

Environmental Engineering (EE); Best practice to assess energy performance of future Radio Access Network (RAN) deployment

Many companies are running studies on estimating energy performance of future radio access networks (RAN) deployment. In this work item we want to find methods and best practice to assess energy performance (Energy Consumption, Energy Efficiency) of a future RAN deployment . The work will start with collecting important preconditions as traffic aspects (growth, new traffic classes, potential disruption), collection of energy efficiency/saving solutions and strategies and energy issues in current networks. Network energy performance will be assessed based on set of scenarios including different solutions. The time period is 2020, optionally beyond and 5G impact. Energy consumption and efficiency definitions from ES 202706 and ES 203228 are preferred.

ETSI TR 103 541 V1.1.1 (2018-05)

Environmental Engineering (EE); Mobile Network (MN) Energy Consumption (EC) estimation method; Energy estimation method based on statistical approach

Providing an estimation method for estimating the total energy consumption of a Mobile Network based on using small portion of data from same Network and statistically approach.

ETSI TR 103 540 V1.1.1 (2018-04)

Environmental Engineering (EE); Study on methods and metrics to evaluate energy efficiency for future 5G systems

This TR is an initial study about metrics and methods of measurements for the energy efficiency of 5G products and networks. This WI will prepare a TR to be considered as a basis for a future specification and not for evaluation of 5G technology.

ETSI TR 103 542 V1.1.1 (2018-06)

Environmental Engineering (EE); Testing methodology for equipment able of dynamic performances adaptation

Energy Aware Networking adapt performances and power consumption according to traffic load. Actual energy efficiency measurement procedures are unsuitable to determines the equipmentâ€(TM)s ability to adapt performances and power consumption to traffic load needs, hence a novel measurement method is required. This WI will focus on fixed access and transport nodes.

ETSI TR 103 419 V1.1.1 (2016-02)

User Group; User Centric Approach; Guidance for providers and standardization makers. User Centric-Providers 

This work item will define guidance to the providers and standard makers to ensure that each service component is provided with the information needed by the user to make an informed choice.

ETSI TR 103 603 V1.1.1 (2019-03)

Energy Efficient IP Video Surveillance Systems over Coaxial Cables; Energy Efficient IP Video Surveillance Systems over Coaxial Cables

The present document describes the motivations for the standardization of technology which enables Energy Efficient IP Video Surveillance Systems over new and legacy Coaxial Infrastructures. The technology enables the transmission of both IP data and power over a single coaxial cable, and is based as much as possible on existing standards. The standardization of this technology is needed for the deployment of sustainable Video Surveillance Systems using interoperable products from different manufacturers.

ETSI GR OEU 029 V1.1.1