English

Distributed Intelligent Integrated Sensing and Communications: The 6G-DISAC Approach

Signal Processing 2024-02-29 v1 Information Theory math.IT

Abstract

This paper introduces the concept of Distributed Intelligent integrated Sensing and Communications (DISAC), which expands the capabilities of Integrated Sensing and Communications (ISAC) towards distributed architectures. Additionally, the DISAC framework integrates novel waveform design with new semantic and goal-oriented communication paradigms, enabling ISAC technologies to transition from traditional data fusion to the semantic composition of diverse sensed and shared information. This progress facilitates large-scale, energy-efficient support for high-precision spatial-temporal processing, optimizing ISAC resource utilization, and enabling effective multi-modal sensing performance. Addressing key challenges such as efficient data management and connect-compute resource utilization, 6G- DISAC stands to revolutionize applications in diverse sectors including transportation, healthcare, and industrial automation. Our study encapsulates the project vision, methodologies, and potential impact, marking a significant stride towards a more connected and intelligent world.

Keywords

Cite

@article{arxiv.2402.18271,
  title  = {Distributed Intelligent Integrated Sensing and Communications: The 6G-DISAC Approach},
  author = {Emilio Calvanese Strinati and George C. Alexandropoulos and Madhusudan Giyyarpuram and Philippe Sehier and Sami Mekki and Vincenzo Sciancalepore and Maximilian Stark and Mohamed Sana and Benoit Denis and Maurizio Crozzoli and Navid Amani and Placido Mursia and Raffaele D Errico and Mauro Boldi and Francesca Costanzo and Francois Rivet and Henk Wymeerschx},
  journal= {arXiv preprint arXiv:2402.18271},
  year   = {2024}
}

Comments

Submitted for conference publication

R2 v1 2026-06-28T15:03:10.156Z