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Target Sensing With Off-grid Sparse Bayesian Learning for AFDM-ISAC System

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arxiv 2503.10011 v1 pith:ZTKJB67Q submitted 2025-03-13 eess.SP

Target Sensing With Off-grid Sparse Bayesian Learning for AFDM-ISAC System

classification eess.SP
keywords off-gridestimationsensingafdm-isacdopplersparseaccuracyaffine
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The recently proposed multi-chirp waveform, affine frequency division multiplexing (AFDM), is regarded as a prospective candidate for integrated sensing and communication (ISAC) due to its robust performance in high-mobility scenarios and full diversity achievement in doubly dispersive channels. However, the insufficient Doppler resolution caused by limited transmission duration can reduce the accuracy of parameter estimation. In this paper, we propose a new off-grid target parameter estimation scheme to jointly estimate the range and velocity of the targets for AFDM-ISAC system, where the off-grid Doppler components are incorporated to enhance estimation accuracy. Specifically, we form the sensing model as an off-grid sparse signal recovery problem relying on the virtual delay and Doppler grids defined in the discrete affine Fourier (DAF) domain, where the off-grid components are regarded as hyper-parameters for estimation. We also employ the expectation-maximization (EM) technique via a sparse Bayesian learning (SBL) framework to update hyper-parameters iteratively. Simulation results indicate that our proposed off-grid algorithm outperforms existing algorithms in sensing performance and is highly robust to the AFDM-ISAC high-mobility scenario.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Frame-Based AFDM-ISAC Waveform Design With Chirp-Enabled Pulse Compression

    eess.SP 2026-07 unverdicted novelty 6.0

    Proposes AFDM-ISAC waveform with chirp subcarrier frame structure, analog chirp-compression receiver, and GCE-BEM-based channel estimation for integrated sensing and communications.

  2. AFDM: Evolving OFDM Towards 6G+

    eess.SP 2026-02 conditional novelty 4.0

    AFDM is presented as an OFDM-backward-compatible 6G+ waveform whose added transceiver cost is two O(N) chirp rotations, supported by a generalized pulse-shaped FDFD channel formulation.