Phase Noise Resilient Codebook Design for Sparse Code Multiple Access

Fuente: arXiv
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Autores principales: Liu, Haibo, Luo, Qu, Liu, Zilong, Luo, Shan, Xiao, Pei, Yuan, Xiaojun
Formato: Preprint
Publicado: 2025
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author Liu, Haibo
Luo, Qu
Liu, Zilong
Luo, Shan
Xiao, Pei
Yuan, Xiaojun
author_facet Liu, Haibo
Luo, Qu
Liu, Zilong
Luo, Shan
Xiao, Pei
Yuan, Xiaojun
contents Sparse code multiple access (SCMA) is a promising technique for future machine type communication systems due to its superior spectral efficiency and capability for supporting massive connectivity. This paper proposes a novel class of sparse codebooks to improve the error rate performance of SCMA in the presence of phase noise (PN). Specifically, we first analyze the error rate performance of SCMA impaired by looking into the pair-wise error probability. Then, a novel codebook design metric, called minimum PN metric (MPNM), is proposed. In addition, to design PN resilient codebooks, we propose a novel pulse-amplitude modulation (PAM)-based low projection mother constellation (LP-MC), called LP-PAM. The codebooks for different users are obtained by rotating and scaling the MC, where the phase rotation angles and scaling factors for different users are optimized by maximizing the proposed MPNM. Numerical results show that the proposed PNCBs have larger MPNM values and achieve improved error rate performance than the-state-of-the-art codebooks.
format Preprint
id arxiv_https___arxiv_org_abs_2501_16823
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Phase Noise Resilient Codebook Design for Sparse Code Multiple Access
Liu, Haibo
Luo, Qu
Liu, Zilong
Luo, Shan
Xiao, Pei
Yuan, Xiaojun
Information Theory
Sparse code multiple access (SCMA) is a promising technique for future machine type communication systems due to its superior spectral efficiency and capability for supporting massive connectivity. This paper proposes a novel class of sparse codebooks to improve the error rate performance of SCMA in the presence of phase noise (PN). Specifically, we first analyze the error rate performance of SCMA impaired by looking into the pair-wise error probability. Then, a novel codebook design metric, called minimum PN metric (MPNM), is proposed. In addition, to design PN resilient codebooks, we propose a novel pulse-amplitude modulation (PAM)-based low projection mother constellation (LP-MC), called LP-PAM. The codebooks for different users are obtained by rotating and scaling the MC, where the phase rotation angles and scaling factors for different users are optimized by maximizing the proposed MPNM. Numerical results show that the proposed PNCBs have larger MPNM values and achieve improved error rate performance than the-state-of-the-art codebooks.
title Phase Noise Resilient Codebook Design for Sparse Code Multiple Access
topic Information Theory
url https://arxiv.org/abs/2501.16823