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Train-to-wayside Wireless Communication In Tunnel Using Ultra-wide-band And Time Reversal

机译:使用超宽带和时间反转的隧道中列车到路边无线通信

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The capabilities of ultra-wide-band (UWB) technology make it a viable candidate for fourth generation wireless communication. This paper proposes the use of UWB radio technology and time-reversal (TR) technique for underground train-to-wayside communication systems. UWB technology has the potential to offer simultaneous ground-to-train communication, train location and obstacle detection in front of the trains. Time-reversal channel prefiltering facilitates signal detection and helps reducing interference. Thus, UWB-TR combination provides a challenging, economically sensible, as well as technically effective alternative solution to existing signaling technologies used in urban transport systems. This paper concentrates on the communication function and reports simulation and measurement performance evaluation of such combinations, respectively in a deterministic tunnel channel model and in real tunnel environments. A new approach is also proposed to ensure multiple access (MA) communication using modified-orthogonal waveforms.
机译:超宽带(UWB)技术的功能使其成为第四代无线通信的可行候选者。本文提出了将UWB无线电技术和时间反转(TR)技术用于地下火车到路边的通信系统。 UWB技术有潜力提供同步的地面到火车通信,火车位置和火车前方障碍物检测。时间反向通道预滤波有助于信号检测并有助于减少干扰。因此,UWB-TR组合为城市交通系统中使用的现有信令技术提供了具有挑战性,在经济上合理,技术上有效的替代解决方案。本文集中讨论通信功能,并分别在确定性隧道通道模型和实际隧道环境中报告了这种组合的仿真和测量性能评估。还提出了一种新方法,以确保使用修改后的正交波形进行多址(MA)通信。

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