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NLoS underwater VLC system performance: static and dynamic channel modeling

机译:NLOS水下VLC系统性能:静态和动态信道建模

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摘要

In this paper, the impact of water channels under different communication link parameters is studied for underwater visible light communication (UVLC). The objective is to highlight the best results for non-line of sight (NLoS) communication links. In addition, NLoS links are studied under different parameters: LED colors, viewing angle, receiving angle, and data rates. The results are obtained and plotted using MATLAB simulation. The performance of the received power is first measured at different wavelengths and data rates. Then, the best results are further investigated at different viewing angles and receiving angles. The obtained results show that using cyan color provides more depth for the NLoS case, as well as a low bit error rate compared to the other colors. Most of the literature is concerned with unpractical configurations in underwater scenarios, such as an empty sea or assuming no human-object or blockage environment. We use the practical setup in Zemax Optics Studio to allow a precise description of ray tracing and high order of reflections inside a sea water environment. The channel impulse response (CIR) is obtained for static channel modeling, including a blockage environment to evaluate the best transmitters in sea water. Also, we are able to compare the average delay and the average delay spread of the source colors. The reflection characteristics of the sea water are considered as wavelength dependent. The CIR obtained by Zemax Solver and MATLAB indicates that cyan is the best source in sea water for different LED chips. Moreover, other previous studies assume perfect alignment scenarios between divers, which is not practical and not suitable for real channel gain results. Accordingly, we present a comprehensive dynamic channel modeling and characterization study for UVLC. Our study is based on Zemax programming language (ZPL) combined with Zemax Optics Studio. Using ZPL enables us to apply a mobility algorithm for divers and measure the channel gain variations due to random motion. We introduce a dynamic motion in a single-input single-output scenario and a single-input multiple-output scenario in the presence of blockage divers. Statistical analyses are studied for the appropriate distributions that can fit the data with various transmitter and receiver specifications. All dynamic scenarios are performed using cyan color in sea water, as it is proven to have satisfactory performance. The statistical results are beneficial for further analysis. As case studies, we consider various underwater scenarios, and the resulting parameters of statistical distributions can be used for future analysis in UVLC dynamic environments. (C) 2019 Optical Society of America
机译:本文研究了不同通信链路参数下的水通道的影响,用于水下可见光通信(UVLC)。目标是突出显示非视线(NLOS)通信链路的最佳结果。此外,在不同的参数下研究了NLOS链接:LED颜色,视角,接收角度和数据速率。使用MATLAB模拟获得并绘制结果。首先以不同波长和数据速率测量接收功率的性能。然后,进一步在不同的观察角和接收角度进一步研究了最佳结果。所获得的结果表明,与其他颜色相比,使用青色为NLOS案例提供更多深度,以及低位错误率。大多数文献涉及水下情景中的不实用配置,例如空海,或者不假设没有人体对象或阻塞环境。我们使用Zemax Optics Studio中的实用设置,以便在海水环境中进行精确描述射线跟踪和高阶的反射。获得频道脉冲响应(CIR)用于静态信道建模,包括堵塞环境,以评估海水中最好的发射器。此外,我们能够比较源颜色的平均延迟和平均延迟扩展。海水的反射特性被认为是波长依赖性。 Zemax求解器和MATLAB获得的CIR表示,青色是不同LED芯片的海水中最好的源。此外,其他先前的研究假设潜水员之间的完美对齐情景,这是不实用的并且不适合真实信道增益结果。因此,我们为UVLC提供了一种全面的动态信道建模和表征研究。我们的研究基于Zemax编程语言(ZPL)与Zemax Optics Studio相结合。使用ZPL使我们能够应用于潜水员的移动性算法,并通过随机运动来测量信道增益变化。我们在堵塞潜水员的情况下在单输入单输出场景中引入动态运动和单次的多输出场景。研究了可以使用各种发射器和接收器规范的适当分布进行统计分析。所有动态方案都是在海水中使用青色进行的,因为它被证明具有令人满意的性能。统计结果有利于进一步分析。如案例研究,我们考虑各种水下情景,统计分布的所得参数可用于UVLC动态环境中的未来分析。 (c)2019年光学学会

著录项

  • 来源
    《Applied optics》 |2019年第30期|共10页
  • 作者单位

    Arab Acad Sci Technol &

    Maritime Transport Coll Engn &

    Technol Alexandria 1029 Egypt;

    Arab Acad Sci Technol &

    Maritime Transport Coll Engn &

    Technol Alexandria 1029 Egypt;

    Arab Acad Sci Technol &

    Maritime Transport Coll Engn &

    Technol Alexandria 1029 Egypt;

    Arab Acad Sci Technol &

    Maritime Transport Coll Engn &

    Technol Alexandria 1029 Egypt;

    Alexandria Univ Elect Engn Dept Alexandria 21544 Egypt;

    Arab Acad Sci Technol &

    Maritime Transport Coll Engn &

    Technol Alexandria 1029 Egypt;

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  • 正文语种 eng
  • 中图分类 应用;
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