高速铁路列车风对折射率结构常数的影响
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1.上海大学通信与信息工程学院上海200444;2. 特种光纤与光接入网省部共建重点实验室上海200072

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TN925

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国家自然科学基金项目(61271061、61132003)资助


Research on the effects of train wind on the refractive structure constant in the highspeed rail of openwire
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Affiliation:

1.School of Communication and Information Engineering, Shanghai University, Shanghai 200444, China; 2.Key Laboratory of Specialty Fiber Optics and Optical Access Networks, Shanghai University, Shanghai 200072, China

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    摘要:

    大气湍流在时间和空间上的运动对无线电波有着重要影响。用折射率结构常数描述湍流是目前最主要的方法。本文通过建立折射率结构常数模型,来研究大气湍流对高速铁路的无线通信的影响。通过运用空气动力学基本原理,引入列车风并推导出一种适用于高速铁路下的折射率结构常数模型。该模型输入的主要参数有列车风、温度和湿度。通过理论推导和仿真分析得出了列车风对折射率结构常数的影响主要有列车边界层的厚度、距列车侧壁的距离、列车高度和列车车速。分析模型可以知道,车速、温度、湿度对其影响较大,其次是列车边界层的厚度、距列车侧壁的距离,列车高度。并为研究高速铁路下的电波的传播提供了理论参考。

    Abstract:

    Atmospheric turbulence motion has a significant impact on the radio waves in time and space. Described refractive index structure constant turbulence is the most important method. Through the establishment of refractive index structure parameter model is to study the effects of atmospheric turbulence on the wireless communication of highspeed rail. Through the use of wind engineering and the basic principles of aerodynamics and the introduction of the train winds is to deduce one refractive index structure constant model in highspeed rail. The main parameters of the model inputs are trains wind, temperature and humidity. Through theoretical analysis and experimental results verify the train winds refractive index structure constant are mainly train the boundary layer thickness, the distance from the side wall of the train, train and train vehicle height. By analyzing model we can know, speed, temperature and humidity have greater impact. in fact,the next of impact is the thickness of the boundary layer of the train, the distance from the side wall of the train and the train height. And for studying the propagation of radio waves at high speed railway we provides a theoretical reference.

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吕恒胜,赵恒凯.高速铁路列车风对折射率结构常数的影响[J].电子测量技术,2017,40(2):77-81

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  • 在线发布日期: 2017-03-16
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