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Shortened Log-Periodic Dipole Antenna Using Printed Dual-Band Dipole Elements

机译:使用印刷双频偶极子元件缩短对数周期偶极子天线

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In this paper, a compact log-periodic dipole array (LPDA) antenna is developed at 0.5–10 GHz. This LPDA structure constitutes fewer dipole elements than a conventional LPDA antenna that exhibits similar resonant frequencies. In the design of a miniaturized LPDA antenna, various size-reduction techniques have been proposed in the open literature to decrease the lateral size of a conventional LPDA. However, little or no attention has been focused on reducing the size of the LPDA antenna by shortening the boom or axial length. In pursuit of reducing the total length of a conventional LPDA, a dual-band dipole antenna is proposed as the radiating elements for the LPDA antenna in this paper. The proposed dipole structure is a printed half-wave principal dipole loaded with a pair of resistive structures via subfeeding lines. A pair of resistive loads forms the auxiliary (secondary) dipole of the proposed dipole antenna. The structure of the proposed dual-band dipole is achieved without a ground plane as opposed to many existing dual-band antenna types. As a result, the dipole antenna has a simple geometry with omnidirectional characteristics. Also, the feeding structure of this dipole can provide an extra degree of freedom to tune the antenna for matching purposes. A 25-element LPDA antenna is designed with a much reduced boom length compared with existing LPDA structures. To confirm the feasibility of the technique, the experimental results of the proposed LPDA prototype were analyzed and juxtaposed with a benchmark LPDA.
机译:在本文中,开发了一种紧凑的对数周期偶极子阵列(LPDA)天线,频率为0.5–10 GHz。与具有相似谐振频率的传统LPDA天线相比,这种LPDA结构构成的偶极子元件更少。在小型化LPDA天线的设计中,公开文献中已经提出了各种尺寸减小技术以减小传统LP​​DA的横向尺寸。然而,很少或没有注意集中在通过缩短吊杆或轴向长度来减小LPDA天线的尺寸上。为了减小传统LP​​DA的总长度,本文提出了一种双频偶极天线作为LPDA天线的辐射元件。提出的偶极子结构是印刷的半波主偶极子,通过子馈线加载了一对电阻结构。一对电阻性负载形成了所提出的偶极天线的辅助(次级)偶极子。与许多现有的双频带天线类型相反,所提出的双频带偶极子的结构是在没有接地平面的情况下实现的。结果,偶极天线具有具有全向特性的简单几何形状。而且,该偶极子的馈电结构可以提供额外的自由度来调谐天线以达到匹配目的。与现有LPDA结构相比,设计了25个元素的LPDA天线,其动臂长度大大缩短。为了证实该技术的可行性,对提出的LPDA原型的实验结果进行了分析,并与基准LPDA并置。

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