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Energy-Efficiency Architectural Enhancements for Sensing-Enabled Mobile Networks

Filipe Conceicao, Filipe B. Teixeira, Luis M. Pessoa, Sebastian Robitzsch

TL;DR

This paper provides an example of a use case, and argues the energy consumption due to sensing has potential to scale to prohibitive levels, and proposes architectural enhancements to solve this problem.

Abstract

Sensing will be a key technology in 6G networks, enabling a plethora of new sensing-enabled use cases. Some of the use cases relate to deployments over a wide physical area that needs to be sensed by multiple sensing sources at different locations. The efficient management of the sensing resources is pivotal for sustainable sensing-enabled mobile network designs. In this paper, we provide an example of such use case, and show the energy consumption due to sensing has potential to scale to prohibitive levels. We then propose architectural enhancements to solve this problem, and discuss energy saving and energy efficient strategies in sensing, that can only be properly quantified and applied with the proposed architectural enhancements.

Energy-Efficiency Architectural Enhancements for Sensing-Enabled Mobile Networks

TL;DR

This paper provides an example of a use case, and argues the energy consumption due to sensing has potential to scale to prohibitive levels, and proposes architectural enhancements to solve this problem.

Abstract

Sensing will be a key technology in 6G networks, enabling a plethora of new sensing-enabled use cases. Some of the use cases relate to deployments over a wide physical area that needs to be sensed by multiple sensing sources at different locations. The efficient management of the sensing resources is pivotal for sustainable sensing-enabled mobile network designs. In this paper, we provide an example of such use case, and show the energy consumption due to sensing has potential to scale to prohibitive levels. We then propose architectural enhancements to solve this problem, and discuss energy saving and energy efficient strategies in sensing, that can only be properly quantified and applied with the proposed architectural enhancements.

Paper Structure

This paper contains 15 sections, 2 equations, 2 figures, 1 table.

Figures (2)

  • Figure 1: An emergency vehicle's route along a busy road, where the emergency vehicle is directed towards a less busy road.
  • Figure 2: Energy Efficiency 5G architecture extension for 5G sensing scenarios.