面向全球定位系统L5波段圆极化响应的角截断方形微带天线设计

A. Deshmukh, Siddharth Nagaokar, Shreyas Tawde, V. P. Chavali
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引用次数: 0

摘要

提出了一种适用于GPS L5波段的圆极化角截断方形微带天线的设计。方形贴片的角截断,将贴片基模简并为双对角定向正交模,两者之间具有最佳间距,从而产生圆偏振特性。最初的设计是在较薄的FR4和Arlon衬底上提出的。在这些设计中,天线产生的阻抗带宽为4- 5%,轴比带宽为0。7 - 1%。在此基础上,提出了谐振长度的计算公式和设计方法,并以此为基础提出了覆盖全球定位系统L5频段的谐振长度设计方法。在该频段,在厚度为0.023$\lambda_{\mathrm{A}\mathrm{R}}$的衬底上设计的阻抗和轴比带宽分别为79 MHz(6.67%)和12 MHz(1.02%),提供宽侧辐射方向图和峰值增益为6.1 dBi。最后,对在贴片角正下方开槽接地面的类似设计进行了比较。修改地平面的配置提供17 MHz(1.44%)的轴比和74 MHz(6.26%)的阻抗带宽,降低了5.7 dBi的宽侧峰值增益。基于上述特点,两种低姿态天线设计均能满足全球定位系统L5波段应用的要求。为了验证模拟结果,进行了测量,结果显示出相似的值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design Of Corner Truncated Square Microstrip Antenna For Circular Polarized Response in Global Positioning System L5 Band Application
Design of a circularly polarized corner truncated square microstrip antenna for GPS L5 band application is proposed. The corner truncation in the square patch, degenerate patch fundamental mode into dual diagonally directed orthogonal modes with optimum inter spacing between them yields circular-polarized characteristics. Initially the designs were presented on thinner FR4 and Arlon substrates. In these designs, antenna yields impedance bandwidth of 4--5% with an axial ratio bandwidth of 0. 7 --1%. Based on these optimum configurations, formulation of resonant length and design methodology is presented, using which a similar design is presented to cover global positioning system L5 frequency band. In this band, proposed design on substrate of thickness 0.023$\lambda_{\mathrm{A}\mathrm{R}}$, results in impedance, and axial ratio bandwidth of 79 MHz (6.67%) and 12 MHz (1.02%), respectively, offering broadside radiation pattern and peak gain of 6.1 dBi. Lastly the comparison is presented for the similar design with slotted ground plane, exactly below the patch corners. Configuration with modified ground plane offers 17 MHz (1.44%) of axial ratio and 74 MHz (6.26%) of impedance bandwidth, with a reduced broadside peak gain of 5.7 dBi. With these antenna characteristics, both the proposed low profile designs satisfy the requirement of global positioning system L5 band application. To authenticate the simulated results, measurements have been carried out, which show, similar values.
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