首页> 外文OA文献 >Design and implementation of band rejected antennas using adaptive surface meshing and genetic algorithms methods. Simulation and measurement of microstrip antennas with the ability of harmonic rejection for wireless and mobile applications including the antenna design optimisation using genetic algorithms.
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Design and implementation of band rejected antennas using adaptive surface meshing and genetic algorithms methods. Simulation and measurement of microstrip antennas with the ability of harmonic rejection for wireless and mobile applications including the antenna design optimisation using genetic algorithms.

机译:使用自适应表面网格划分和遗传算法方法设计和实现带阻天线。具有无线谐波抑制能力的微带天线的仿真和测量,适用于无线和移动应用,包括使用遗传算法的天线设计优化。

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摘要

With the advances in wireless communication systems, antennas with different shapes and design have achieved great demand and are desirable for many uses such as personal communication systems, and other applications involving wireless communication. This has resulted in different shapes and types of antenna design in order to achieve different antenna characteristic. One attractive approach to the design of antennas is to suppress or attenuate harmonic contents due to the non-linear operation of the Radio Frequency (RF) front end.udThe objectives of this work were to investigate, design and implement antennas for harmonic suppression with the aid of a genetic algorithm (GA). Several microstrip patch antennas were designed to operate at frequencies 1.0, 1.8 and 2.4 GHz respectively. The microstrip patch antenna with stub tuned microstrip lines was also employed at 1.0 and 1.8 GHz to meet the design objectives.udA new sensing patch technique is introduced and applied in order to find the accepted power at harmonic frequencies. The evaluation of the measured power accepted at the antenna feed port was done using an electromagnetic (EM) simulator, Ansoft Designer, in terms of current distribution. A two sensors method is presented on one antenna prototype to estimate the accepted power at three frequencies.udThe computational method is based on an integral equation solver using adaptive surface meshing driven by a genetic algorithm. Several examples are demonstrated, including design of coaxially-fed, air-dielectric patch antennas implanted with shorting and folded walls. The characteristics of the antennas in terms of the impedance responses and far field radiation patterns are discussed. The results in terms of the radiation performance are addressed, and compared to measurements. The presented results of these antennas show a good impedance matching at the fundamental frequency with good suppression achieved at the second and third harmonic frequencies.
机译:随着无线通信系统的进步,具有不同形状和设计的天线已经实现了巨大的需求,并且对于诸如个人通信系统以及涉及无线通信的其他应用的许多用途是期望的。这导致天线设计的形状和类型不同,以实现不同的天线特性。天线设计的一种有吸引力的方法是抑制或衰减由于射频(RF)前端的非线性操作而引起的谐波含量。 ud这项工作的目标是研究,设计和实现用于谐波抑制的天线。借助遗传算法(GA)。设计了几种微带贴片天线,分别工作在1.0、1.8和2.4 GHz的频率上。为了达到设计目标,还使用了带有短波调谐微带线的微带贴片天线,以满足设计目标。 ud引入并应用了一种新的传感贴片技术,以寻找谐波频率下的可接受功率。天线馈电端口接受的测量功率的评估是使用电磁(EM)仿真器Ansoft Designer根据电流分布进行的。在一个天线原型上提出了两个传感器的方法,以估计三个频率下的接收功率。 ud该计算方法基于一个由遗传算法驱动的自适应曲面网格化的积分方程求解器。展示了几个示例,包括同轴植入的空气绝缘贴片天线的设计,该天线植入了短壁和折叠壁。讨论了天线在阻抗响应和远场辐射方向图方面的特性。解决了辐射性能方面的结果,并将其与测量结果进行了比较。这些天线的呈现结果表明,在基频处具有良好的阻抗匹配,并且在二次谐波和三次谐波频率处实现了良好的抑制。

著录项

  • 作者

    Binmelha Mohammed Saeed;

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  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 en
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