Doppler Shift Keying Modulation for Uplink Multiple Access over Doubly-Dispersive Channels

Fuente: arXiv
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Auteurs principaux: Wang, Xuehan, Wang, Jintao, Lin, Hai, Yuan, Jinhong, Shi, Xu, Zhang, Hengyu, Song, Jian
Format: Preprint
Publié: 2026
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author Wang, Xuehan
Wang, Jintao
Lin, Hai
Yuan, Jinhong
Shi, Xu
Zhang, Hengyu
Song, Jian
author_facet Wang, Xuehan
Wang, Jintao
Lin, Hai
Yuan, Jinhong
Shi, Xu
Zhang, Hengyu
Song, Jian
contents The delay-Doppler (DD) domain modulation has been regarded as one of the most competitive candidates to support wireless communications for emerging high-mobility applications in the sixth-generation mobile networks. Unfortunately, most of the existing designs for DD domain modulation suffer from high peak-to-average power ratio (PAPR) and unbearable detection complexity under uplink transmission since large time duration and bandwidth are required to guarantee high DD resolutions. To address these issues, the Doppler shift keying (DSK) modulation based on the orthogonal delay Doppler division multiplexing modulator is proposed in this paper, where the input-output characterization in the DD domain is fully exploited. The principle of the DSK transceiver is first established with the one-hot mapper and low-complexity iterative successive interference cancellation-maximum ratio combining detector for point-to-point scenarios. The proposed scheme is then generalized to the zero auto-correlation sequence-based implementation, which benefits the extension of multi-user (MU) uplink DSK frameworks. For uplink DSK transmission, Zadoff-Chu (ZC) sequences are adopted as the basis sequences. We optimize the assignment of ZC roots to different user equipments (UEs) by minimizing the maximum inter-user interference. This optimization process, which analyzes the root allocation, directly assigns a specific ZC sequence to each UE. The PAPR and bit error rate performance of the proposed DSK modulation with the low-complexity detector is finally verified by extensive simulation results under doubly-dispersive channels, which demonstrates the superiority of DSK modulation especially for uplink multiple access over doubly dispersive channels.
format Preprint
id arxiv_https___arxiv_org_abs_2603_02721
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Doppler Shift Keying Modulation for Uplink Multiple Access over Doubly-Dispersive Channels
Wang, Xuehan
Wang, Jintao
Lin, Hai
Yuan, Jinhong
Shi, Xu
Zhang, Hengyu
Song, Jian
Signal Processing
The delay-Doppler (DD) domain modulation has been regarded as one of the most competitive candidates to support wireless communications for emerging high-mobility applications in the sixth-generation mobile networks. Unfortunately, most of the existing designs for DD domain modulation suffer from high peak-to-average power ratio (PAPR) and unbearable detection complexity under uplink transmission since large time duration and bandwidth are required to guarantee high DD resolutions. To address these issues, the Doppler shift keying (DSK) modulation based on the orthogonal delay Doppler division multiplexing modulator is proposed in this paper, where the input-output characterization in the DD domain is fully exploited. The principle of the DSK transceiver is first established with the one-hot mapper and low-complexity iterative successive interference cancellation-maximum ratio combining detector for point-to-point scenarios. The proposed scheme is then generalized to the zero auto-correlation sequence-based implementation, which benefits the extension of multi-user (MU) uplink DSK frameworks. For uplink DSK transmission, Zadoff-Chu (ZC) sequences are adopted as the basis sequences. We optimize the assignment of ZC roots to different user equipments (UEs) by minimizing the maximum inter-user interference. This optimization process, which analyzes the root allocation, directly assigns a specific ZC sequence to each UE. The PAPR and bit error rate performance of the proposed DSK modulation with the low-complexity detector is finally verified by extensive simulation results under doubly-dispersive channels, which demonstrates the superiority of DSK modulation especially for uplink multiple access over doubly dispersive channels.
title Doppler Shift Keying Modulation for Uplink Multiple Access over Doubly-Dispersive Channels
topic Signal Processing
url https://arxiv.org/abs/2603.02721