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首页> 外文期刊>Applied optics >Optical wireless communication performance enhancement using Hamming coding and an efficient adaptive equalizer with a deep-learning-based quality assessment
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Optical wireless communication performance enhancement using Hamming coding and an efficient adaptive equalizer with a deep-learning-based quality assessment

机译:光无线通信性能增强利用汉明编码和高效的自适应均衡器,具有基于深度学习的质量评估

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摘要

Optical wireless communication (OWC) technology is one of several alternative technologies for addressing the radio frequency limitations for applications in both indoor and outdoor architectures. Indoor optical wireless systems suffer from noise and intersymbol interference (ISI). These degradations are produced by the wireless channel multipath effect, which causes data rate limitation and hence overall system performance degradation. On the other hand, outdoor OWC suffers from several physical impairments that affect transmission quality. Channel coding can play a vital role in the performance enhancement of OWC systems to ensure that data transmission is robust against channel impairments. In this paper, an efficient framework for OWC in developing African countries is introduced. It is suitable for OWC in both indoor and outdoor environments. The outdoor scenario will be suitable to wild areas in Africa. A detailed study of the system stages is presented to guarantee the suitable modulation, coding, equalization, and quality assessment scenarios for the OWC process, especially for tasks such as image and video communication. Hamming and low-density parity check coding techniques are utilized with an asymmetrically clipped DC-offset optical orthogonal frequency-division multiplexing (ADO-OFDM) scenario. The performance versus the complexity of both utilized techniques for channel coding is studied, and both coding techniques are compared at different coding rates. Another task studied in this paper is how to perform efficient adaptive channel estimation and hence equalization on the OWC systems to combat the effect of ISI. The proposed schemes for this task are based on the adaptive recursive least-squares (RLS) and the adaptive least mean squares (LMS) algorithms with activity detection guidance and tap decoupling techniques at the receiver side. These adaptive channel estimators are compared with the adaptive estimators based on the standard LMS and RLS algorithms. Moreover, this paper presents a new scenario for quality assessment of optical communication systems based on the regular transmission of images over the system and quality evaluation of these images at the receiver based on a trained convolutional neural network. The proposed OWC framework is very useful for developing countries in Africa due to its simplicity of implementation with high performance. (C) 2021 Optical Society of America
机译:光无线通信(OWC)技术是解决室内和室外应用中射频限制的几种替代技术之一。室内光无线系统受到噪声和符号间干扰(ISI)的影响。这些性能下降是由无线信道多径效应造成的,它会导致数据速率限制,从而导致整个系统性能下降。另一方面,户外OWC受到多种影响传输质量的身体损伤。信道编码可以在OWC系统的性能增强中发挥重要作用,以确保数据传输对信道损伤具有鲁棒性。本文介绍了一个有效的非洲发展中国家OWC框架。它适用于室内和室外环境中的OWC。户外场景将适用于非洲的野生地区。对系统级进行了详细研究,以确保OWC过程(尤其是图像和视频通信等任务)具有合适的调制、编码、均衡和质量评估方案。Hamming和低密度奇偶校验编码技术用于非对称剪裁直流偏移光正交频分复用(ADO-OFDM)方案。研究了两种信道编码技术的性能和复杂度,并在不同的编码速率下对两种编码技术进行了比较。本文研究的另一个任务是如何在OWC系统上进行有效的自适应信道估计和均衡,以对抗ISI的影响。该任务的拟议方案基于自适应递归最小二乘(RLS)和自适应最小均方(LMS)算法,在接收端采用活动检测引导和抽头解耦技术。将这些自适应信道估计器与基于标准LMS和RLS算法的自适应信道估计器进行了比较。此外,本文还提出了一种新的光通信系统质量评估方案,该方案基于图像在系统上的定期传输,并基于训练的卷积神经网络在接收器处对这些图像进行质量评估。拟议的OWC框架对非洲发展中国家非常有用,因为其实施简单,性能高。(2021)美国光学学会

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  • 来源
    《Applied optics》 |2021年第13期|共12页
  • 作者单位

    Menoufia Univ Fac Elect Engn Dept Elect &

    Elect Commun Engn Menoufia 32952 Egypt;

    Menia Univ Fac Engn Dept Elect Engn Al Minya 61111 Egypt;

    Menoufia Univ Fac Elect Engn Dept Elect &

    Elect Commun Engn Menoufia 32952 Egypt;

    Menia Univ Fac Engn Dept Elect Engn Al Minya 61111 Egypt;

    Kafr El Sheikh Univ Fac Artificial Intelligence Dept Robot &

    Intelligent Machines Kafr Al Sheikh Egypt;

    Menoufia Univ Fac Elect Engn Dept Elect &

    Elect Commun Engn Menoufia 32952 Egypt;

    Menoufia Univ Fac Elect Engn Dept Elect &

    Elect Commun Engn Menoufia 32952 Egypt;

    Menoufia Univ Fac Elect Engn Dept Elect &

    Elect Commun Engn Menoufia 32952 Egypt;

    Helwan Univ Fac Technol &

    Educ Dept Elect Technol Cairo Egypt;

    Menoufia Univ Fac Elect Engn Dept Elect &

    Elect Commun Engn Menoufia 32952 Egypt;

    Menoufia Univ Fac Elect Engn Dept Ind Elect &

    Control Engn Menoufia 32952 Egypt;

    Menia Univ Fac Engn Dept Elect Engn Al Minya 61111 Egypt;

    Sohag Univ Fac Engn Elect Engn Dept Sohag 82524 Egypt;

    Menoufia Univ Fac Elect Engn Dept Elect &

    Elect Commun Engn Menoufia 32952 Egypt;

    Engn Sect Broadcast Egyptian Radio &

    Televis Unio POB 1186 Cairo Egypt;

    Menoufia Univ Fac Elect Engn Dept Elect &

    Elect Commun Engn Menoufia 32952 Egypt;

    Menoufia Univ Fac Elect Engn Dept Elect &

    Elect Commun Engn Menoufia 32952 Egypt;

    Menoufia Univ Fac Elect Engn Dept Elect &

    Elect Commun Engn Menoufia 32952 Egypt;

    Menoufia Univ Fac Elect Engn Dept Elect &

    Elect Commun Engn Menoufia 32952 Egypt;

    Menoufia Univ Fac Elect Engn Dept Elect &

    Elect Commun Engn Menoufia 32952 Egypt;

    Egypt Japan Univ Sci &

    Technol Dept Elect &

    Commun Alexandria Egypt;

    Menia Univ Fac Engn Dept Elect Engn Al Minya 61111 Egypt;

    Menia Univ Fac Engn Dept Elect Engn Al Minya 61111 Egypt;

    Alexandria Univ Fac Engn Elect Engn Dept Alexandria Egypt;

    Egypt Japan Univ Sci &

    Technol Dept Elect &

    Commun Alexandria Egypt;

    Menoufia Univ Fac Elect Engn Dept Elect &

    Elect Commun Engn Menoufia 32952 Egypt;

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