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Novel optimization techniques for underwater wireless optical communication links:using Monte Carlo simulation
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作者 Intesar Ramley Hamdah MAlzayed +2 位作者 Yas Al-Hadeethi Abeer ZBarasheed Mingguang Chen 《Defence Technology(防务技术)》 2025年第8期386-411,共26页
The Underwater Communication Link(UCL)is a crucial component of Underwater Wireless Optical Communication(UWOC)systems,requiring optimised design to mitigate the high power attenuation inherent in seawater.To ensure t... The Underwater Communication Link(UCL)is a crucial component of Underwater Wireless Optical Communication(UWOC)systems,requiring optimised design to mitigate the high power attenuation inherent in seawater.To ensure the reliability of an optimal UCL design,it is essential to account for the three primary scattering regimes:forward scattering(FSC),backward scattering(BSC),and isotropic scattering(ISC)in seawater channels.This study introduces a new photon-tracking model based on a discrete equation,facilitating Monte Carlo Simulation(MCS)to evaluate how different scattering regimes influence received photon distribution.Three distinct Scattering Regime Contribution Weight(SRCW)probability sets were employed,each representing different UCL operational configurations dominated by specific scattering regimes.The proposed modeling approach enables a comprehensive assessment of the temporal characteristics of received optical pulses,channel loss,and time spread-ultimately defining the optimal UCL design parameters.The key findings of this study include:(1)Enhancing the FSC regime dominance leads to a quasi-light waveguide effect over link spans and small Fields of View(FOV)<25°,significantly improving channel performance in Harbor seawater compared to Coastal seawater.(2)A well-designed UCL with a small FOV(<25°)can minimise channel loss and time spread,ensuring high capacity and efficient performance in both Coastal and Harbor seawaters.(3)When BSC and ISC contributions exceed FSC dominance,the received optical pulse undergoes significant temporal broadening,particularly for larger FOV angles(>25°)and extended link spans.(4)The developed novel MCS-based discrete equation provides a simple yet robust model for simulating photon propagation in both homogeneous and inhomogeneous underwater channels.These insights contribute to developing more efficient and reliable UCL designs with military standards by enhancing UWOC system performance over a longer linkspan for a given limited optical power across various underwater environments. 展开更多
关键词 Channel gain/loss Channel impulse response(CIR) Central limit theorem(CLT) Channel time spread Field of view(FOV) Monte Carlo simulation(MCS) Underwater wireless optical communication(UWOC)
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OWC中DPPM调制解调技术研究 被引量:8
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作者 赵黎 柯熙政 刘健 《激光杂志》 CAS CSCD 北大核心 2007年第2期63-64,共2页
调制解调技术一直是光无线通信(OWC)领域中的研究热点之一。较之脉冲位置调制(PPM),差分脉冲位置调制(DPPM)是一种光功率利用率和带宽利用率都较高的调制方式。本文对PPM调制和DPPM调制进行了比较分析,提出了基于FPGA的DPPM调制解调系... 调制解调技术一直是光无线通信(OWC)领域中的研究热点之一。较之脉冲位置调制(PPM),差分脉冲位置调制(DPPM)是一种光功率利用率和带宽利用率都较高的调制方式。本文对PPM调制和DPPM调制进行了比较分析,提出了基于FPGA的DPPM调制解调系统的设计方案。硬件仿真结果表明,该系统性能稳定,可以应用到光无线通信系统中。 展开更多
关键词 光无线通信 脉冲位置调制 差分脉冲位置调制 FPGA
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基于遗传算法的室内光无线通信功率分布优化方案 被引量:1
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作者 徐春 《计算机应用》 CSCD 北大核心 2012年第4期949-952,共4页
室内光无线通信(OWC)具备频谱资源丰富、功耗低、抗电磁干扰等诸多优势,因而越来越为业界所关注。然而,由于多径传输效应的存在,即使在同一室内房间,同一接收端在不同的接受位置依旧难以获得一致的令人满意的高质量信号。针对这一问题,... 室内光无线通信(OWC)具备频谱资源丰富、功耗低、抗电磁干扰等诸多优势,因而越来越为业界所关注。然而,由于多径传输效应的存在,即使在同一室内房间,同一接收端在不同的接受位置依旧难以获得一致的令人满意的高质量信号。针对这一问题,提出了一种基于遗传算法的动态优化方案,以期降低接受信号功率的波动程度。相应的,给出了基于商用光探测器(视场角为50°)的仿真实验。具体的仿真结果显示该优化方案可以将波动范围(相较于接收到的光信号功率的最大值)从优化之前的50.3%降低至34.6%,同时优化操作对照明功能的影响是可以忽略不计的。 展开更多
关键词 光无线通信 遗传算法 优化 绿色照明 信号覆盖
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