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Tunnel wall structure for reducing strong reflection propagation multipath effect of millimeter waves

A multi-path effect and tunnel wall technology, applied in tunnels, sound-producing equipment, instruments, etc., can solve the problems of difficult design and construction, high cost of absorbing materials, and achieve the effect of reducing material cost, easy implementation, and reducing installation strength

Inactive Publication Date: 2010-08-11
TONGJI UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

However, the cost of deploying absorbing materials on the entire tunnel wall is high, and the design and construction are difficult

Method used

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  • Tunnel wall structure for reducing strong reflection propagation multipath effect of millimeter waves
  • Tunnel wall structure for reducing strong reflection propagation multipath effect of millimeter waves
  • Tunnel wall structure for reducing strong reflection propagation multipath effect of millimeter waves

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Embodiment Construction

[0051] The specific embodiments of the present invention will be described below in conjunction with the accompanying drawings.

[0052] See figure 1 As shown, the tunnel wall structure provided by the present invention for reducing the multipath effect of strong reflection and propagation of millimeter waves includes a tunnel wall body 10 and a wave-absorbing belt 30 . The main body 10 of the tunnel wall is made of ordinary materials, and the millimeter-wave absorbing material is only coated on a small area where strong reflection multipath effects occur, so that a small ring-shaped absorbing band 30 formed is embedded in the tunnel wall 10 .

[0053] The above absorbing band 30 is used to absorb the millimeter wave incident wave 21 emitted by the base station antenna 20, which obviously reduces the strong multipath effect caused by the reflected wave 22 and the incident wave 21, especially eliminates the occurrence of the primary reflected wave 22 with the strongest amplitud...

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Abstract

The invention relates to a tunnel wall structure for reducing the strong reflection propagation multipath effect of millimeter waves, which is characterized by comprising a wave absorbing band embedded in the main body of a tunnel wall, and the wave absorbing band is arranged in a region of the main body of the tunnel wall in which the strong reflection multipath effect of millimeter waves occurs; and a millimeter wave absorbing material is coated on the wave absorbing band. Since the wave absorbing band is coated on the tunnel wall, the wave absorbing band absorbs millimeter wave incident waves, and obviously reduces the strong multipath effect caused by reflected waves and the incidents waves so as to reduce the multipath fading and delay spread caused by strong reflection and obviously improve communication channel characteristics. Since a small section of region in which strong multi-path fading occurs is coated with the wave absorbing material, the material and construction costs are obviously reduced, and simultaneously the implementation is simple and convenient, the installation strength is reduced, and the impact of tunnel wall absorbing treatment on the installation of other functional facilities of tunnels can be prevented.

Description

technical field [0001] The invention relates to a tunnel wall structure, in particular to a tunnel wall structure for reducing the multipath effect of millimeter wave strong reflection propagation. Background technique [0002] Millimeter waves are electromagnetic waves with a wavelength of 10 to 1 millimeter. At present, there are few studies on the propagation laws of millimeter waves in limited spaces at home and abroad, because there is no real millimeter wave system used in tunnels. Most of the research frequency bands on radio propagation in tunnels are concentrated below 5GHz; although the German maglev trains use 38GHz millimeter waves to build communication systems, there are no technical methods and technical specifications for communication in tunnels. [0003] The main technical methods for the propagation of low-frequency electromagnetic waves below 5 GHz in tunnels include avoiding the cut-off characteristics of tunnels by selecting appropriate communication f...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): E21D9/00G10K11/168
Inventor 谈长青虞翊王绍银陈峙郑国莘赵恒凯符玮玮卫慧张立
Owner TONGJI UNIV