六极化态正交可切换馈电网络集成微带天线设计

Muhammad Asad Rahman, Md. Naimur Rahman, M. Hossain
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摘要

本文提出了一种在6ghz以下频段具有极化可重构性的孔耦合微带天线。该天线可激发水平和垂直线极化、+45°和-45°线极化、右圆极化和左圆极化。为了获得极化可重构性,采用单馈或双馈方式激励方形贴片天线,并采用两个正交的孔径耦合可切换馈源网络,其中每个网络具有正交长度移相器或180°移相器。单端口用于激发水平和垂直LP。另一方面,可切换双端口激励可以产生+45°LP, -45°LP, RHCP和LHCP。基本上,180°移相器有助于实现±45°LP,正交移相器用于激发双cp感。对于无线应用,由于其低交叉极化水平和在每个极化状态下良好的隔离性,所建议的天线更具吸引力。该天线的10 db阻抗带宽(BW)为:LP为1.17%,LHCP为0.72%,RHCP为0.60%。此外,两个CP感官的3-dB轴比(AR) BW均大于2.50%。在不使用任何隔离改进技术的情况下,在3.356 GHz的谐振频率下获得了更好的隔离特性(<-25 dB)。两种CP模式和LP模式的最大增益分别为7.82 dBi、7.68 dBi和8.90 dBi。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Design of Orthogonal Switchable Feed Networks Integrated Microstrip Antenna for Six Polarization States
In this paper, an aperture-coupled microstrip antenna with polarization reconfigurability in the sub-6 GHz range is proposed. The proposed antenna can excite horizontal and vertical linear polarization (LP), +45°and -45°LP, right-hand and left-hand circular polarization (CP). To attain polarization reconfigurability, a square shaped patch antenna is excited by either single or dual-feeding mode with two orthogonal aperture-coupled switchable feed networks where each network has either a quadrature length shifter or a 180° phase shifter. Single port is used to excite horizontal and vertical LP. On the other side, switchable dual port excitation can produce +45°LP, -45°LP, RHCP, and LHCP. Basically, 180° phase shifter helps to achieve ±45° LP and quadrature length shifter is used to excite dual-CP sense. For wireless applications, the suggested antenna is more appealing due to its low cross-polarization level and good isolation in each polarization state. The proposed antenna has 10-dB impedance bandwidth (BW) of 1.17% for LP, 0.72% for LHCP, and 0.60% for RHCP. Moreover, 3-dB axial ratio (AR) BW is more than 2.50% for both CP senses. Better isolation characteristic (<-25 dB) is attained at resonance frequency of 3.356 GHz without utilizing any isolation improvement techniques. Besides, the maximum gain of two CP modes and the LP mode are 7.82 dBic, 7.68 dBic, and 8.90 dBi, respectively.
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