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The performance test of U-shape antenna applied in tunnel detection

机译:U形天线在隧道检测中的性能测试

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Owing to the growth of population, thus increased land scarcity for normal surface road construct and improper city council planning it inflict more tunnel and underground structure constructed. As most of the constructed underground structures are subjected to severe adverse condition which need thorough inspection. To maintain the good inhabitable tunnel structure ground penetrating radar (GPR) always use as a measuring tools. GPR as an inspection tools in tunnel has been plague with series of setback. In this case a new type of antenna has been introduced in order to improve the performance in tunnel inspection. An emphasize part of the antenna design must be ensuring the directivity, bandwidth characteristic, radiation efficiency and the penetration depth. This research has been divided into three cases and those cases were performed in order to signify the characteristic of the antenna. Laboratory test and numerical simulation were carried out for the comparison and urged to the optimize solution. In this paper, Agilent E5060A ENA has been used for the laboratory test to examine the performance of the antenna. The FDTD method for numerical simulation is to prove the authenticity of the result of laboratory test. The test result illustrates that; the new designed antenna is suitable for tunnel inspection. The important improvement should be further carried out. Further studies must investigate the application of this type of antenna for the inspection of tunnel lining.
机译:由于人口的增长,正常的地面道路建设增加了土地的稀缺性,而且市议会的规划不当,造成了更多的隧道和地下结构的建设。由于大多数建造的地下结构都受到严重的不利条件,需要进行彻底检查。为了保持良好的居住隧道结构,必须始终使用地面穿透雷达(GPR)作为测量工具。 GPR作为隧道中的检查工具遭受了一系列挫折的困扰。在这种情况下,为了改善隧道检查的性能,引入了一种新型天线。天线设计的重点在于必须确保方向性,带宽特性,辐射效率和穿透深度。这项研究分为三个案例,并进行了这些案例以表明天线的特性。为了进行比较,进行了实验室测试和数值模拟,并敦促寻求最佳解决方案。在本文中,安捷伦E5060A ENA已用于实验室测试,以检查天线的性能。 FDTD数值模拟方法是为了证明实验室测试结果的真实性。测试结果表明:新设计的天线适用于隧道检查。重要的改进应进一步进行。进一步的研究必须调查这种天线在隧道衬砌检查中的应用。

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