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首页> 外文期刊>International journal of antennas and propagation >Dual-Frequency Miniaturized Substrate Integrated Waveguide Quarter-Mode Cavity-Backed Antenna Based on Minkowski Fractal Gap with Orthogonal Polarization Radiation Characteristics
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Dual-Frequency Miniaturized Substrate Integrated Waveguide Quarter-Mode Cavity-Backed Antenna Based on Minkowski Fractal Gap with Orthogonal Polarization Radiation Characteristics

机译:双频小型化基板集成波导四分之一模腔背侧基于Minkowski分形差距的正交偏振辐射特性

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摘要

A novel quarter-mode substrate integrated waveguide miniaturized cavity-backed antenna loading Minkowski fractal gap is presented in this paper. Firstly, the resonant frequency of the rectangular substrate integrated waveguide resonator is reduced by etching the fractal gap in the resonator to achieve miniaturization. In addition, because of the symmetry of electric field distribution in second and third order resonant modes, the cavity can be segmented into a quarter-mode and the other order resonance modes with asymmetric electric field distribution can be suppressed according to the cavity model theory. Hence, the cavity size is further reduced. The dimension of designed antenna is 0.26λ0×0.26λ0 (λ0 is the wavelength in free space; in this paper, the corresponding wavelength is 3.6 GHz). Moreover, the orthogonal polarization of the proposed antenna in two frequency bands is achieved because the electric field is orthogonal in second and third order resonant modes. This dual-frequency orthogonal polarization characteristic enables antenna to communicate in two working bands and has good channel isolation. The simulated and measured results are consistent. The antenna gain is 4.67dBi and 3.4dBi, respectively, at 3.7GHz and 4.6GHz.
机译:本文介绍了一种新颖的四分之一衬底集成的波导小型化腔背对路的天线装载Minkowski分形间隙。首先,通过蚀刻谐振器中的分形差距来减小矩形基板集成波导谐振器的谐振频率以实现小型化。另外,由于第二和三阶谐振模式中的电场分布的对称性,可以根据空腔模型理论抑制空腔可以分段为四分之一模式,并且可以抑制具有不对称电场分布的另一个阶数谐振模式。因此,进一步减少了腔体尺寸。设计天线的尺寸为0.26λ0×0.26λ0(λ0是自由空间中的波长;在本文中,相应的波长为3.6 GHz)。此外,实现了两个频带中所提出的天线的正交偏振,因为电场在第二和第三阶谐振模式中正交。该双频正交偏振特性使天线能够在两个工作频带中通信并且具有良好的信道隔离。模拟和测量结果是一致的。天线增益分别为4.67DBI和3.4DBI,分别为3.7GHz和4.6GHz。

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