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基于OTFS-NOMA的低轨卫星通信与导航一体化传输方法研究

张洋铭 赵亚飞 李彦骁 张世杰

无线电工程2026,Vol.56Issue(3):415-425,11.
无线电工程2026,Vol.56Issue(3):415-425,11.DOI:10.3969/j.issn.1003-3106.2026.03.004

基于OTFS-NOMA的低轨卫星通信与导航一体化传输方法研究

Research on OTFS-NOMA-based Integrated Communication and Navigation Transmission Method for LEO Satellites

张洋铭 1赵亚飞 1李彦骁 1张世杰1

作者信息

  • 1. 北京邮电大学 网络与交换技术全国重点实验室,北京 100876
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摘要

Abstract

In Low Earth Orbit(LEO)satellite downlink communications,severe Doppler shifts and rapidly time-varying multipath fading caused by the high-speed movement of satellites pose significant challenges to LEO system design.Meanwhile,the networked deployment of LEO mega-communication constellations offers opportunities for the development of LEO-based navigation capabilities.To address this issue,an integrated communication and navigation transmission scheme is proposed based on Orthogonal Time Frequency Space(OTFS)modulation and Non-Orthogonal Multiple Access(NOMA).In the proposed approach,communication symbols and navigation signals are superimposed in the Delay-Doppler(DD)domain using power-domain multiplexing,while the entire frame is filled with Pseudo-Noise(PN)sequence serving as the pilot signal.A sliding matched filter is employed to estimate the sparse channel,and a coarse Doppler estimation mechanism is introduced to mitigate dynamic drift resulting from the inherent high Doppler distortion in satellite-to-ground links.Simulation results demonstrate that under typical link conditions,the proposed OTFS-NOMA integrated architecture achieves a two-order-of-magnitude reduction in Bit Error Rate(BER)compared with conventional Orthogonal Frequency Division Multiplexing(OFDM),and enables pseudorange measurement accuracy of 2.18 m.

关键词

非正交多址接入/正交时频空/通信与导航一体化/低地球轨道卫星

Key words

NOMA/OTFS/integrated communication and navigation/LEO satellite

分类

信息技术与安全科学

引用本文复制引用

张洋铭,赵亚飞,李彦骁,张世杰..基于OTFS-NOMA的低轨卫星通信与导航一体化传输方法研究[J].无线电工程,2026,56(3):415-425,11.

基金项目

国家自然科学基金(62401071) National Natural Science Foundation of China(62401071) (62401071)

无线电工程

1003-3106

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