English

Rate-Splitting--Inspired Bistatic OFDM-ISAC

Signal Processing 2026-05-22 v1

Abstract

Achieving effective uplink bistatic ISAC over an OFDM waveform gives rise to challenging interference structures. These are mostly due to unequal direct- and echo-path contributions and Doppler-induced ICI, rendering orthogonal resource separation and fixed SIC strategies inadequate. To address this problem, we propose a RS-inspired framework where the transmitter splits each communication message into a robust and a supplementary stream, which are jointly superposed over a sensing signal. Furthermore, we present the design of a staged sensing-communication receiver. Based on this framework, we derive tractable per-subcarrier SINR expressions and establish the relation between sensing accuracy and communication reliability based on the Fisher information. Building on these, we formulate a joint power-allocation problem for SE maximization under sensing-performance and power constraints. The resulting non-convex formulation is solved using convex surrogates and fractional programming. Numerical results demonstrate that, compared to NOMA-inspired baselines, the proposed framework provides more effective IFI management and improved robustness to Doppler-induced ICI.

Keywords

Cite

@article{arxiv.2605.21729,
  title  = {Rate-Splitting--Inspired Bistatic OFDM-ISAC},
  author = {Bruno F. Costa and Anup Mishra and Israel Leyva-Mayorga and Taufik Abrão and Petar Popovski},
  journal= {arXiv preprint arXiv:2605.21729},
  year   = {2026}
}

Comments

submitted to IEEE Transactions on Wireless Communications

R2 v1 2026-07-22T07:24:56.500Z