English

Rate-Splitting Multiple Access for Dual-Functional Radar-Communication Satellite Systems

Information Theory 2022-03-29 v1 Signal Processing math.IT

Abstract

In this paper, we consider a multi-antenna dual-functional radar-communication (DFRC) satellite system, where the satellite has a dual capability to simultaneously communicate with downlink satellite users (SUs) and probe detection signals to a moving target. To design an appropriate DFRC waveform, we investigate the rate-splitting multiple access (RSMA)-assisted DFRC beamfoming, and employ the Cramer-Rao bound (CRB) as a radar performance metric, which represents a lower bound on the variance of unbiased estimators. The beamforming is optimized to minimize the CRB subject to quality of service (QoS) constraints of SUs and a per-feed transmit power budget. Satellite communication and detecting ground/ sea objects in a bistatic mode are accomplished simultaneously using the DFRC waveform we designed. Simulation results demonstrate that the proposed RSMA-assisted DFRC beamforming outperforms the conventional space-division multiple access (SDMA) strategy in terms of the communication-sensing trade-off and target estimation performance in a multibeam satellite system.

Keywords

Cite

@article{arxiv.2203.14067,
  title  = {Rate-Splitting Multiple Access for Dual-Functional Radar-Communication Satellite Systems},
  author = {Longfei Yin and Bruno Clerckx},
  journal= {arXiv preprint arXiv:2203.14067},
  year   = {2022}
}

Comments

WCNC 2022

R2 v1 2026-06-24T10:26:50.977Z