English

An Integrated Sensing and Communications System Based on Affine Frequency Division Multiplexing

Signal Processing 2025-02-03 v1

Abstract

This paper proposes an integrated sensing and communications (ISAC) system based on affine frequency division multiplexing (AFDM) waveform. To this end, a metric set is designed according to not only the maximum tolerable delay/Doppler, but also the weighted spectral efficiency as well as the outage/error probability of sensing and communications. This enables the analytical investigation of the performance trade-offs of AFDM-ISAC system using the derived analytical relation among metrics and AFDM waveform parameters. Moreover, by revealing that delay and the integral/fractional parts of normalized Doppler can be decoupled in the affine Fourier transform-Doppler domain, an efficient estimation method is proposed for our AFDM-ISAC system, whose unambiguous Doppler can break through the limitation of subcarrier spacing. Theoretical analyses and numerical results verify that our proposed AFDM-ISAC system may significantly enlarge unambiguous delay/Doppler while possessing good spectral efficiency and peak-to-sidelobe level ratio in high-mobility scenarios.

Keywords

Cite

@article{arxiv.2501.19142,
  title  = {An Integrated Sensing and Communications System Based on Affine Frequency Division Multiplexing},
  author = {Yuanhan Ni and Peng Yuan and Qin Huang and Fan Liu and Zulin Wang},
  journal= {arXiv preprint arXiv:2501.19142},
  year   = {2025}
}
R2 v1 2026-06-28T21:27:37.040Z