English

Time-Modulated EM Skins for Integrated Sensing and Communications

Systems and Control 2025-05-13 v1 Systems and Control

Abstract

An innovative solution, based on the exploitation of the harmonic beams generated by time-modulated electromagnetic skins (TM-EMSs), is proposed for the implementation of integrated sensing and communication (ISAC) functionalities in a Smart Electromagnetic Environment (SEME) scenario. More in detail, the field radiated by a user terminal, located at an unknown position, is assumed to illuminate a passive TM-EMS that, thanks to a suitable modulation of the local reflection coefficients at the meta-atom level of the EMS surface, simultaneously reflects towards a receiving base station (BS) a "sum" beam and a "difference" one at slightly different frequencies. By processing the received signals and exploiting monopulse radar tracking concepts, the BS both localizes the user terminal and, as a by-product, establishes a communication link with it by leveraging on the "sum" reflected beam. Towards this purpose, the arising harmonic beam control problem is reformulated as a global optimization one, which is successively solved by means of an evolutionary iterative approach to determine the desired TM-EMS modulation sequence. The results from selected numerical and experimental tests are reported to assess the effectiveness and the reliability of the proposed approach.

Keywords

Cite

@article{arxiv.2505.06909,
  title  = {Time-Modulated EM Skins for Integrated Sensing and Communications},
  author = {Lorenzo Poli and Aakash Bansal and Giacomo Oliveri and Aaron Angel Salas-Sanchez and Will Whittow and Andrea Massa},
  journal= {arXiv preprint arXiv:2505.06909},
  year   = {2025}
}
R2 v1 2026-06-28T23:28:32.768Z