English

Capacity Bounds on Doppler OFDM Channels

Information Theory 2026-02-05 v1 math.IT

Abstract

Low Earth orbit (LEO) satellite systems experience significant Doppler effects due to high mobility. While Doppler shifts can be largely compensated, residual frequency uncertainty induces a structured form of channel uncertainty that can limit achievable rates. We model this effect using a block-fading channel of the form H=F+sG \mathbf{H} = \mathbf{F} + s \mathbf{G} , where ss is an unknown scalar random parameter. We first study this model in a general N×NN\times N MIMO setting. For this channel, we derive achievable rate lower bounds based on explicit transmission schemes and capacity upper bounds using a duality approach. We study Gaussian signaling and propose a practical superposition scheme with subspace alignment (SN) and successive interference cancellation, where a coarse-layer stream serves as an implicit pilot for decoding refined-layer data. We characterize asymptotic capacity in the near-coherent and high-SNR regimes, and show via Doppler-OFDM simulations that the proposed SN scheme achieves near-optimal rates with low complexity.

Keywords

Cite

@article{arxiv.2602.04862,
  title  = {Capacity Bounds on Doppler OFDM Channels},
  author = {Pablo Orellana and Zheng Li and Jean-Marc Kelif and Sheng Yang and Shlomo Shamai},
  journal= {arXiv preprint arXiv:2602.04862},
  year   = {2026}
}

Comments

8 pages, 1 figure, submitted to ISIT 2026

R2 v1 2026-07-01T09:36:29.622Z