首页> 外文OA文献 >Aplicação do método LTT às estruturas retangulares e triangulares em multicamadas e empilhadas em substratos PBG para comunicações móveis
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Aplicação do método LTT às estruturas retangulares e triangulares em multicamadas e empilhadas em substratos PBG para comunicações móveis

机译:LTT方法在PBG基板上多层多层堆叠的矩形和三角形结构中的应用

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摘要

Recently the planar antennas have been studied due to their characteristics as well as the advantages that they offers when compared with another types of antennas. In the mobile communications area, the need for this kind of antennas have became each time bigger due to the intense increase of the mobile communications that needs of antennas which operate in multifrequency and wide bandwidth. The microstrip antennas presents narrow bandwidth due the loss in the dielectric generated by radiation. Another limitation is the radiation pattern degradation due the generation of surface waves in the substrate. In this work some used techniques to minimize the disadvantages (previously mentioned) of the use of microstrip antennas are presented, those are: substrates with PBG material - Photonic Bandgap, multilayer antennas and with stacked patches. The developed analysis in this work used the TTL - Transverse Transmission Line method in the domain of Fourier transform, that uses a component of propagation in the y direction (transverse to the direction real of propagation z), treating the general equations of electric and magnetic field as functions of y and y . This work has as objective the application of the TTL method to microstrip structures with single and multilayers of rectangular and triangular patches, to obtaining the resonance frequency and radiation pattern of each structure. This method is applied for the treatment of the fields in stacked structures. The Homogenization theory will be applied to obtaining the effective permittivity for s and p polarizations of the substrate composed of PBG material. Numerical results for the triangular and rectangular antennas with single layer, multilayers resonators with triangular and rectangular patches are presented (in photonic and isotropic substrates). Conclusions and suggestions for continuity of this work are presented
机译:最近,由于平面天线的特性以及与其他类型天线相比所具有的优势,已经对平面天线进行了研究。在移动通信领域,由于移动通信的急剧增长,对这种天线的需求每次都变得越来越大,而在多频和宽带宽下工作的天线的需求。由于辐射产生的电介质损耗,微带天线呈现出窄带宽。另一个限制是由于在衬底中产生表面波而导致的辐射图退化。在这项工作中,提出了一些最小化使用微带天线的缺点的使用过的技术(先前提到的),这些技术是:具有PBG材料的基板-光子带隙,多层天线和堆叠式贴片。在这项工作中开发的分析方法在傅立叶变换的领域中使用了TTL-横向传输线方法,该方法使用沿y方向(与传播z的实数方向相反)的传播分量,处理了电磁的一般方程字段作为y和y的函数。这项工作的目标是将TTL方法应用于具有单个和多层矩形和三角形贴片的微带结构,以获得每个结构的共振频率和辐射方向图。该方法用于处理堆叠结构中的场。均质化理论将用于获得由PBG材料组成的基板的s和p极化的有效介电常数。给出了具有三角形和矩形贴片的单层,多层谐振器的三角形和矩形天线的数值结果(在光子和各向同性基板中)。提出结论和建议,以继续这项工作

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