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New Definitions of Electromagnetic Screening of Cases in Front of Radiates Interferences

机译:辐射干扰前案件电磁屏蔽的新定义

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摘要

Electromagnetic shielding enclosures are simulated in this PhD thesis. Metallic enclosures with a frontal aperture have been implemented and shielding effectiveness has been calculated in frequency and time domains. The CST Microwave Studio application has been used, and necessary electromagnetic shielding measurements have been implemented in order to confirm the simulated results. An anechoic chamber and the network vector analyser ZVA 67 R&S have been employed. There were different set-ups that consist on two shielding enclosures with different apertures on their frontal walls, as well as an electric and a magnetic probes, and an external log-periodic antenna.;The electromagnetic field shielding of enclosures against radiated interferences, and its study in the frequency and time domains requires to determine specific parameters for the measurement of the shielding effectiveness (SE). With this target recently it has been essayed indicators based on the peak reduction of electric and magnetic fields and the energy density in the time domain. Although many papers have been published with numeric simulations, rarely real measures in laboratory have been published.;In the first part of this study, some important theoretical concepts have been explained, as the high intensity penetration of radiated fields in enclosures with apertures, several ways to define the shielding effectiveness, analytic formulations and different parameters among other concepts, in the frequency and time domains.;Then, the system is defined, as from the implementations for simulations and calculations in CST Microwave Studio point of view, as from the set-ups implemented in laboratory point of view. In this section the features and utilization of the network vector analyser ZVA 67 R&S;, anechoic chamber design and dimensions, log-periodic antenna features, and all the different probes, enclosures and apertures employed have been detailed.;After de system definition simulated and measured results have been obtained for some definitions and used SE indicators for incident plane wave against enclosures in a specific bandwidth. The plane wave has been treated as a reference interference to compare to other electromagnetic interference cases. It has been verified that the laboratory measurements and the simulations are in good agreement. The effects of the electric (dipole) and magnetic (loop) probes presences have been analysed too, as they can modified the results.;In this study new SE definitions (new indicators) have been evaluated too, and they have been compared with the classical time-domain SE definitions. These new indicators have been studied as function of several parameters that can be modified in the enclosures as the aperture dimensions or the enclosure dimensions.;Finally, in order to get more generic solutions that can be useful to later SE studies, the new SE results have been analysed and interpreted for an aperture size scanning that provide an unique value for the more critical SE indicator and for an specific bandwidth allowing direct SE comparisons with other enclosures.
机译:在本博士学位论文中对电磁屏蔽罩进行了仿真。已经实现了具有正面孔的金属外壳,并且已经在频域和时域中计算了屏蔽效果。已使用CST Microwave Studio应用程序,并且已执行必要的电磁屏蔽测量,以确认模拟结果。已经使用了消声室和网络矢量分析仪ZVA 67 R&S。有不同的设置,包括两个在其前壁上有不同孔径的屏蔽罩,一个电探针和一个磁探针以及一个外部对数周期天线;外壳的电磁场屏蔽免受辐射干扰,以及其在频域和时域方面的研究需要确定用于测量屏蔽效果(SE)的特定参数。最近针对这个目标,已经提出了基于电场和磁场的峰值减少以及时域中的能量密度的指标。尽管已经发表了许多关于数值模拟的论文,但很少发表实验室中的实际测量方法。在本研究的第一部分中,已经解释了一些重要的理论概念,例如在具有孔的封闭空间中辐射场的高强度穿透,在频域和时域中定义屏蔽效果,分析公式和其他概念中的不同参数的方法。然后,从CST Microwave Studio的仿真和计算实现中定义系统,从从实验室角度实施设置。本节详细介绍了网络矢量分析仪ZVA 67 R&S的功能和使用,消声室的设计和尺寸,对数周期天线的功能以及所使用的所有不同的探头,外壳和孔径。已获得一些定义的测量结果,并使用SE指示器对特定带宽内的外壳入射平面波。与其他电磁干扰情况相比,平面波已被视为参考干扰。已经证实,实验室的测量结果和模拟结果吻合良好。还分析了电探针(偶极子)和磁探针(环形)的存在,因为它们可以修改结果。在本研究中,还评估了新的SE定义(新指标),并将其与经典时域SE定义。这些新指标已根据几个参数进行了研究,这些参数可以在外壳中作为孔径尺寸或外壳尺寸进行修改。最后,为了获得对以后的SE研究有用的更通用的解决方案,新的SE结果已对孔径尺寸扫描进行了分析和解释,该孔径扫描可为更关键的SE指示器和特定带宽提供唯一值,从而可以与其他机箱直接进行SE比较。

著录项

  • 作者单位

    Universidad Politecnica de Cartagena (Spain).;

  • 授予单位 Universidad Politecnica de Cartagena (Spain).;
  • 学科 Electromagnetics.;Electrical engineering.;Industrial engineering.
  • 学位 Dr.
  • 年度 2017
  • 页码 187 p.
  • 总页数 187
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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