标题: 单埠及多埠隙孔耦合微带天线 : 设计与应用
Slot-Coupled Microstrip Antennas with Single or Multiple Ports : Designs and Applications
作者: 曾文仁
Wen-Jen Tseng
钟世忠
Dr. Shyh-Jong Chung
电信工程研究所
关键字: 隙孔耦合微带天线;回授天线振荡器;广角回波天线阵列;双圆极化天线;动差法;积分方程法;双埠天线;偏移馈入之隙孔天线;slot-coupled microstrip antenna;feedback antenna oscillator;retrodirective antenna array;dual circularly polarized antenna;method of moments;mixed-potential integral equation;two-port antenna;offset-fed slot antenna
公开日期: 1998
摘要: 本论文旨在研究几种单埠及多埠隙孔耦合微带天线结构,使其可运用于主动天线电路、远端识别及通讯传输方面。这些结构包括∶一、变更传统的隙孔耦合微带天线架构而形成崭新的双埠天线;二、将多对隙孔耦合微带天线安排成具有广角回波性质的天线阵列;三、以两个隙孔天线搭配等功率分配器之架构组成新式双圆极化天线。以上所提之三种天线的馈入方式皆采用隙孔耦合馈入法。对于这些天线,论文中将以动差法配合积分方程法来分析各个结构的电磁特性。为了简化分析过程,文中以波导管模型来模拟微带馈入线。
论文所提之双埠隙孔耦合微带天线包含一馈入埠与一耦合埠。从馈入埠输入的能量大部分会由微带天线辐射出去而部分的能量则会传送至耦合埠。此结构不仅当成天线使用,同时亦可做为振荡器之回授线路。运用此双埠天线结构,我们制作出一运作非常稳定之振荡器,其振荡频率为9.79 GHz与模拟结果比较仅有百分之零点二的误差。
论文所提之第二种结构为具有二维(E面与H面)广角回波特性之平面反射板。文中分析与制作了一片操作在X频段之反射板,此板内置六对隙孔耦合微带天线,每一对天线皆以反射板中心作对称分布并藉一段微带线来做联结。从反射板所反射之电波主要来源有三:一是各微带天线对的回波,二为各微带天线的散射波,第三种则是基板接地面的散射波。藉由调整串接于每一天线对的微带线长度,可以使反射板反射出较宽且较平坦之电波场型。经实验测量后得知,反射波场型之量测结果与模拟结果非常地近似。
最后一种结构是利用偏移馈入之隙孔天线去取代等功率威尔金生分配器中的电阻,进而设计出一组操作在S频段的双圆极化天线。当此圆极化天线之驻波比小于二时,其反射损耗频宽有百分之三十九点三,隔绝频宽有百分之十点三。另外,此天线拥有频宽为百分之二十八的半功率轴比。
In this thesis, we propose and analyze several slot-coupled microstrip antennas with single or multiple ports for applications in active integrated antennas, remote identification, and communications. These antenna structures consist of (a) adding a second port to the traditional slot-coupled microstrip antenna to obtain a brand-new two-port antenna, (b) arranging several slot-coupled microstrip antennas to achieve a planar retrodirective antenna array, and (c) using two slot antennas constructed with the Wilkinson power divider configuration to form a novel dual circularly polarized antenna. To analyze these antenna structures of slot coupling feed, Galerkin's method of moments together with a mixed-potential integral equation (MPIE) was used. Also, the microstrip feed line was modeled as a waveguide for simplifying the problems.
The two-port slot-coupled microstrip antenna contains a feeding port and a coupling port. Most of the incident power coming from the feeding port is radiated by the microstrip patch, and part of the power enters to the coupling port. A feedback antenna oscillator was designed by applying the present structure where it served as a feedback resonator and a radiator at the same time. The oscillation was stable and with a clean spectrum at the frequency of 9.79 GHz which was only 0.2% different from the design one. An effective isotropic radiated power (EIRP) of 39 mW was achieved. The measured cross-polarized fields were at least 15 dB lower than the co-polarized ones.
Next, a planar antenna array reflector with retrodirectivity in both the E-plane and the H-plane is analyzed and demonstrated at X-band. The reflector consists of six pairs of symmetrically located slot-coupled patch antennas paired by microstrip lines. The total reflected field from the reflector is separated into three primary components, that is, the reradiation field from the patch antennas (RFPA), the scattering field from the patch antennas (SFPA), and the scattering field from the ground plane (SFGP). The first two components are calculated by using the method of moments and the last one is by the physical optics (PO) method combined with the method of equivalent currents (MEC). By tuning the microstrip-line lengths, the total reflected field contributed by the three components is designed to possess a broad-beamed pattern in both the E-plane and the H-plane. The measured reflected-field patterns of the fabricated reflector show good agreement with the designed ones.
Finally, an offset-fed slot antenna was used to replace the lumped resistor in the equal-split Wilkinson power divider, and a dual CP slot antenna operating at S-band was designed and fabricated experimentally. The antenna possessed a return loss bandwidth of 39.3%, an isolation bandwidth of 10.3% for VSWR < 2, and a 3-dB axial ratio bandwidth of 28%.
URI: http://140.113.39.130/cdrfb3/record/nctu/#NT870435002
http://hdl.handle.net/11536/64459
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