基于圆扇形元件的圆极化贴片天线小型化研究

T. Tanaka, M. Takahashi, K. Ito
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引用次数: 1

摘要

众所周知,卫星通信[1]、GPS等都需要圆极化(CP)紧凑型印刷天线。目前已经报道了许多单馈圆极化紧凑微带天线的设计[2][3]。采用高介电常数衬底或缝隙加载贴片可获得紧凑的单馈CP贴片天线。然而,当使用高介电常数衬底时,不仅会降低谐振频率,而且会降低增益和带宽性能。另一方面,尽管狭缝加载贴片天线的尺寸可以减小36%,但狭缝长度不等[2]或狭缝段和摄动段都必须进行优化才能获得CP辐射[3]。本文提出了一种小型化的圆极化贴片天线。这种贴片天线由带有方形缺口的圆形扇形元件组成。普通圆形扇形贴片天线产生两种不同的谐振模式。理论上,一种模式诱导的偏振垂直于第二种模式的偏振。在本研究中,这两种模式的谐振频率和相对相位仅通过改变允许产生CP的方形陷波的大小来控制。这次,通过数值和实验讨论了这种圆形扇形贴片天线的基本设计和性能。应当注意的是,所提出的天线的尺寸是通常的角截断方形贴片天线的一半,因此能够构成紧凑的圆极化贴片阵列天线。
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Miniaturization of Circularly Polarized Patch Antenna Using Circular Sector Element
INTRODUCTION It is commonly known that circularly polarized (CP) compact printed antennas are required in satellite communications [1], GPS, etc. Many designs of single feed circularly polarized compact microstrip antennas have been reported so far [2][3]. Compact single feed CP patch antennas can be obtained by using high permittivity substrate or slit loaded patch. However, in case of using high permittivity substrate, not only the resonant frequency but also the gain and band width performances are decreased. On the other hand, although slit loaded patch antennas can achieve a 36 % reduction in size, unequal slot length [2] or both slit and perturbation segments have to be optimized to obtain a CP radiation [3]. In this paper, a miniaturized circularly polarized patch antenna is presented. This patch antenna consists of a circular sector element with square notches. Normal circular sector patch antenna generates two different resonant modes. Theoretically, one mode induces a polarization that is perpendicular to the polarization of the second mode. In this study, the resonant frequency and relative phase of these two modes are controlled by varying only the size of the square notches allowing the generation of a CP. This time, the basic design and performances of such a circular sector patch antenna are numerically and experimentally discussed. It should be noted that the size of the proposed antenna is half the one of usual corner-truncated square patch antennas, hence enabling the composition of a compact circularly polarized patch array antenna.
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