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首页> 外文期刊>Terahertz Science and Technology, IEEE Transactions on >Stochastic Channel Modeling for Kiosk Applications in the Terahertz Band
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Stochastic Channel Modeling for Kiosk Applications in the Terahertz Band

机译:太赫兹频段信息亭应用的随机信道建模

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摘要

Terahertz (THz) Kiosk application offers ultrahigh downloads of digital information to users’ handheld devices. System configuration and multiple paths between the transmitter and receiver have important impact on the achievable data rates. In this paper, the propagation channel of THz Kiosk downloading application is investigated and a stochastic channel model is proposed. Based on channel measurements using a vector network analyzer, a 3-D ray-tracing simulator is calibrated to conduct simulations for an in-depth analysis of the different channel characteristics. Successively, the observed propagation paths are classified and the key channel parameters in time, frequency, and spatial domains are modeled for each type of ray. The resulting stochastic model is evaluated in terms of Rician K-factor and root mean square delay spread. Compared to the reference data, the mean absolute errors of these two metrics of the three investigated scenarios are less than 1.48 dB and 0.07 ns, respectively. The results show that the target 100 gigabits per second data rate is achievable at tens of gigahertz system bandwidth at proper communication distance and higher order modulation schemes. The developed channel model allows system design engineers to generate realizations of propagation channel efficiently for designing Kiosk-fashion close-proximity communication systems in the THz band.
机译:太赫兹(THz)信息亭应用程序可以向用户的手持设备提供超高的数字信息下载量。系统配置以及发送器和接收器之间的多条路径对可达到的数据速率具有重要影响。本文研究了太赫兹信息亭下载应用的传播通道,提出了一种随机通道模型。基于使用矢量网络分析仪进行的通道测量,对3-D射线跟踪模拟器进行校准以进行仿真,以深入分析不同的通道特性。依次对观察到的传播路径进行分类,并针对每种射线对时间,频率和空间域中的关键通道参数进行建模。根据Rician K因子和均方根时延扩展评估所得的随机模型。与参考数据相比,这三个调查情景的这两个指标的平均绝对误差分别小于1.48 dB和0.07 ns。结果表明,在适当的通信距离和更高阶的调制方案下,在数十GHz系统带宽下,可以达到每秒100吉比特的目标数据速率。所开发的信道模型使系统设计工程师可以有效地生成传播信道的实现,以设计THz频带中的Kiosk-fashion近距离通信系统。

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  • 作者单位

    State Key Laboratory of Rail Traffic Control and Safety and the Beijing Engineering Research Center of High-speed Railway Broadband Mobile Communications, Beijing Jiaotong University, Beijing, China;

    State Key Laboratory of Rail Traffic Control and Safety and the Beijing Engineering Research Center of High-speed Railway Broadband Mobile Communications, Beijing Jiaotong University, Beijing, China;

    Institut für Nachrichtentechnik, Technische Universität Braunschweig, Braunschweig, Germany;

    State Key Laboratory of Rail Traffic Control and Safety and the Beijing Engineering Research Center of High-speed Railway Broadband Mobile Communications, Beijing Jiaotong University, Beijing, China;

    State Key Laboratory of Rail Traffic Control and Safety and the Beijing Engineering Research Center of High-speed Railway Broadband Mobile Communications, Beijing Jiaotong University, Beijing, China;

    State Key Laboratory of Rail Traffic Control and Safety and the Beijing Engineering Research Center of High-speed Railway Broadband Mobile Communications, Beijing Jiaotong University, Beijing, China;

    National Institute of Information and Communications Technology (NICT), Koganei, Japan;

    National Institute of Information and Communications Technology (NICT), Koganei, Japan;

    Institut für Nachrichtentechnik, Technische Universität Braunschweig, Braunschweig, Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Antenna measurements; Delays; Bandwidth; Wireless communication; Stochastic processes; Load modeling; Metals;

    机译:天线测量;延迟;带宽;无线通信;随机过程;负载建模;金属;

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