A Structured Sparse Bayesian Channel Estimation Approach for Orthogonal Time—Frequency Space Modulation

Author:

Zhang Mi1ORCID,Xia Xiaochen1,Xu Kui1,Yang Xiaoqin1,Xie Wei1,Li Yunkun2,Liu Yang1

Affiliation:

1. School of Communication Engineering, Army Engineering University of PLA, Nanjing 210007, China

2. Unit 31105 of PLA, Nanjing 210042, China

Abstract

Orthogonal time–frequency space (OTFS) modulation has been advocated as a promising waveform for achieving integrated sensing and communication (ISAC) due to its superiority in high-mobility adaptability and spectral efficiency. In OTFS modulation-based ISAC systems, accurate channel acquisition is critical for both communication reception and sensing parameter estimation. However, the existence of the fractional Doppler frequency shift spreads the effective channels of the OTFS signal significantly, making efficient channel acquisition very challenging. In this paper, we first derive the sparse structure of the channel in the delay Doppler (DD) domain according to the input and output relationship of OTFS signals. On this basis, a new structured Bayesian learning approach is proposed for accurate channel estimation, which includes a novel structured prior model for the delay-Doppler channel and a successive majorization–minimization (SMM) algorithm for efficient posterior channel estimate computation. Simulation results show that the proposed approach significantly outperforms the reference schemes, especially in the low signal-to-noise ratio (SNR) region.

Funder

National Natural Science Foundation of China

Basic Research Project of Jiangsu Province

Natural Science Foundation of Jiangsu Province

Publisher

MDPI AG

Subject

General Physics and Astronomy

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