Cross-layer Integrated Sensing and Communication: A Joint Industrial and Academic Perspective.

Research output: Preprint/Documentation/ReportPreprint

Contributors

  • Henk Wymeersch - (Author)
  • Nuutti Tervo - (Author)
  • Stefan Wänstedt - (Author)
  • Sharief Saleh - (Author)
  • Joerg Ahlendorf - (Author)
  • Özgür Umut Akgül - (Author)
  • Vasileios Tsekenis - (Author)
  • Sokratis Barmpounakis - (Author)
  • Liping Bai - (Author)
  • Martin Beale - (Author)
  • Rafael Berkvens - (Author)
  • Nabeel Nisar Bhat - (Author)
  • Hui Chen - , Chalmers University of Technology (Author)
  • Shrayan Das - (Author)
  • Claude Desset - (Author)
  • Antonio de la Oliva - (Author)
  • Prajnamaya Dass - , Barkhausen Institut (Author)
  • Jeroen Famaey - (Author)
  • Hamed Farhadi - (Author)
  • Gerhard P. Fettweis - , Disruption and Societal Change Center (TUDiSC), Clusters of Excellence CeTI: Centre for Tactile Internet, Vodafone Chair of Mobile Communications Systems (Author)
  • Yu Ge - (Author)
  • Hao Guo - (Author)
  • Rreze Halili - (Author)
  • Katsuyuki Haneda - (Author)
  • Abdur Rahman Mohamed Ismail - (Author)
  • Akshay Jain - (Author)
  • Sylvaine Kerboeuf - (Author)
  • Musa Furkan Keskin - (Author)
  • Emad Ibrahim - (Author)
  • Bilal Khan - (Author)
  • Siddhartha Kumar - (Author)
  • Stefan Köpsell - , Barkhausen Institut (Author)
  • Apostolos Kousaridas - (Author)
  • Pekka Kyösti - (Author)
  • Simon Lindberg - (Author)
  • Mohammad Hossein Moghaddam - (Author)
  • Ahmad Nimr - , Vodafone Chair of Mobile Communications Systems (Author)
  • Victor Pettersson - (Author)
  • Aarno Pärssinen - (Author)
  • Basuki Priyanto - (Author)
  • Athanasios Stavridis - (Author)
  • Tommy Svensson - (Author)
  • Sonika Ujjwal - (Author)

Abstract

Integrated sensing and communication (ISAC) enables radio systems to simultaneously sense and communicate with their environment. This paper, developed within the Hexa-X-II project funded by the European Union, presents a comprehensive cross-layer vision for ISAC in 6G networks, integrating insights from physical-layer design, hardware architectures, AI-driven intelligence, and protocol-level innovations. We begin by revisiting the foundational principles of ISAC, highlighting synergies and trade-offs between sensing and communication across different integration levels. Enabling technologies (such as multiband operation, massive and distributed MIMO, non-terrestrial networks, reconfigurable intelligent surfaces, and machine learning) are analyzed in conjunction with hardware considerations including waveform design, synchronization, and full-duplex operation. To bridge implementation and system-level evaluation, we introduce a quantitative cross-layer framework linking design parameters to key performance and value indicators. By synthesizing perspectives from both academia and industry, this paper outlines how deeply integrated ISAC can transform 6G into a programmable and context-aware platform supporting applications from reliable wireless access to autonomous mobility and digital twinning.

Details

Original languageEnglish
Volumeabs/2505.10933
Publication statusPublished - May 2025
No renderer: customAssociatesEventsRenderPortal,dk.atira.pure.api.shared.model.researchoutput.WorkingPaper

External IDs

ORCID /0000-0003-3045-6271/work/199215903
ORCID /0000-0002-0466-562X/work/199216547

Keywords