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A multi-mode waveguide tunnel channel model for high-speed train wireless communication systems

机译:高速列车无线通信系统的多模式波导隧道信道模型

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The recent development of high-speed trains (HSTs) introduce new challenges to wireless communication systems for HSTs. For demonstrating the feasibility of these systems, accurate channel models which can mimic key characteristics of HST wireless channels are essential. In this paper, we focus on HST channel models for the tunnel scenario, which is different from other HST channel environments, such as rural area and viaducts. Considering unique characteristics of tunnel channel environments, we extend the existing multi-mode waveguide tunnel channel model to be time dependent, obtain the channel impulse responses, and then further investigate certain key tunnel channel characteristics such as temporal autocorrelation function (ACF) and power spectrum density (PSD). The impact of time on ACFs and PSDs, and the impact of frequency on the received power are revealed via numerical results.
机译:高速列车(HST)的最新发展给用于HST的无线通信系统带来了新的挑战。为了证明这些系统的可行性,可以模拟HST无线信道关键特性的精确信道模型至关重要。在本文中,我们将重点放在隧道方案的HST通道模型上,该模型与其他HST通道环境(例如农村地区和高架桥)不同。考虑到隧道信道环境的独特特征,我们将现有的多模波导隧道信道模型扩展为时间相关的,获得信道脉冲响应,然后进一步研究某些关键的隧道信道特征,例如时间自相关函数(ACF)和功率谱密度(PSD)。通过数值结果揭示了时间对ACF和PSD的影响以及频率对接收功率的影响。

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