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Research on Field-to-Circuit Signal Characteristics of Train Antennas in Railway Communication Environment Using Integrative Modeling Technique

机译:综合建模技术在铁路通信环境中火车天线现场对电路信号特性研究

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In modern railway wireless communications, the transmission properties of information between train and wayside would be affected by the complicated environment. In this paper, an integrative modeling technique (IMT) which involves finite-difference time-domain (FDTD) method with uni-axial anisotropic perfectly matched layer (UPML) technique is applied to study the field-to-circuit characteristics of train antennas with complex railway environment considered, such as the locomotive body, overhead contact line for power supply, locomotive pantograph, steel rails, ballastless track, earth plane, etc.. Besides, the spark-over between the pantograph and overhead line is simulated and introduced into the integrated computation model as an electromagnetic noise, which is excited frequently with the moving of high-speed train. By adding BPSK modulator-demodulator into the integrative computation model, the results show that the influence of the electrified railway environment and the spark-over noise on quality of RF signal transmission is very significant and it will probably cause the increase of bit error probability.
机译:在现代铁路无线通信中,列车与路边之间信息的传输属性将受到复杂环境的影响。在本文中,应用了具有单轴各向异性完全匹配的层(UPML)技术的有限差分时间域(FDTD)方法的一体化建模技术(IMT),用于研究火车天线的现场电路特性复杂的铁路环境考虑,如机车体,电源开销接触线,机车受电弓,钢轨,禁止轨道,地球平面等。此外,对电机和架空线之间的火花在模拟和引入综合计算模型作为电磁噪声,其经常随高速列车的移动经常兴奋。通过将BPSK调制器 - 解调器添加到集成计算模型中,结果表明,电气化的铁路环境和火花噪声对RF信号传输质量的影响非常显着,可能导致比特误差概率的增加。

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