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奇模排列索引调制的水下光正交时频空技术

Underwater Optical Orthogonal Time Frequency Space Technology with Odd Mode Permutation Index Modulation

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【作者】 赵鹏王真王惠琴张悦曹明华

【Author】 ZHAO Peng;WANG Zhen;WANG Huiqin;ZHANG Yue;CAO Minghua;College of Computer and Artificial Intelligence,Lanzhou University of Technology;

【机构】 兰州理工大学计算机与人工智能学院

【摘要】 针对光正交频分复用(OOFDM)系统在水下湍流信道中面临的性能恶化问题,引入光正交时频空(OOTFS)架构在时延-多普勒(DD)域进行信号处理,并采用奇数模式星座设计,提出一种能够有效对抗时变湍流效应,提升频谱效率的奇模排列索引调制(OMPIM)技术方案,并基于伽马-伽马分布的水下湍流信道模型对其进行性能评估。仿真结果表明:在强湍流条件下,OOTFS-OMPIM相比OOFDM-OMPIM在误码率为1×10-4时可获得3~4 dB的信噪比增益。所提方案通过DD域信号处理和奇模星座索引设计,有效缓解了湍流引起的信道时变性影响,为实现高速可靠的水下光通信提供了一种可参考的新方案。

【Abstract】 To address the performance degradation of optical orthogonal frequency division multiplexing(OOFDM) systems in underwater turbulent channels,an optical orthogonal time frequency space(OOTFS) architecture is introduced for signal processing in the delay-doppler(DD) domain.Employing an odd-mode constellation design,this paper proposes an odd mode permutation index modulation(OMPIM) technique that effectively counters time-varying turbulence effects while enhancing spectral efficiency.Performance evaluation is then conducted using an underwater turbulence channel model characterized by the Gamma-Gamma distribution.Simulation results demonstrate that under strong turbulence conditions,OOTFS-OMPIM achieves a 3-4 dB signal-to-noise ratio gain over OOFDM-OMPIM at a bit error rate of 1×10-4.By employing DD-domain signal processing and odd-mode constellation indexing,the proposed scheme effectively mitigates the impact of turbulence-induced channel time-varying effects,offering a novel reference solution for high-speed,reliable underwater optical communication.

【基金】 国家自然科学基金项目“非理想信道下光正交频分复用索引调制技术的联合优化策略研究”(62261033);国家自然科学基金项目“大气激光通信中增强型广义空间调制技术的研究”(62265010);2026年度甘肃省高校研究生“创新之星”项目
  • 【文献出处】 数字海洋与水下攻防 ,Digital Ocean & Underwater Warfare , 编辑部邮箱 ,2025年06期
  • 【分类号】TN929.3
  • 【下载频次】9
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