共面波导开端馈电的微带贴片天线线阵天线

T. Kamei, H. Shima, S. Fukuda, S. Ishii
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引用次数: 3

摘要

在这项研究中,我们使用四个20 GHz频带的微带贴片天线构建了一个4单元线性阵列天线,其结构使得信号从开放式共面波导无接触地馈送到贴片天线。我们研究了与线性阵列贴片天线设计相关的因素。为了调整最大辐射方向并减少回波损耗,我们优化了元件之间的间距及其形状。当元件间距为11.50mm,贴片宽度为3.90mm,贴片长度为4.15mm时,我们获得了20.05GHz的谐振频率和-29.59dB的谐振频率回波损耗。然而,在4元件线性阵列天线结构的情况下,在除了20GHz的设计谐振频带之外的频带中发生不期望的谐振。为了抑制这些不期望的谐振并在设计频率下获得稳定的操作,我们提出了一种新的结构,其中馈线负载有短截线,并通过计算机模拟表明,可以充分抑制不期望的共振的发生。此外,我们证明了引入短截线引起的辐射增益降低的问题,提出了一种新结构的设计方法,其中馈线在截线之间具有狭缝,并将天线增益提高了0.5dBi。
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A Linear Array Antenna of Microstrip Patch Antennas Fed by the Open-End of Coplanar Waveguides
In this study, we constructed a 4-element linear array antenna using four 20 GHz band microstrip patch antennas with a structure such that the signal is fed to the patch antennas from open-end coplanar waveguides without contact. We investigated factors related to the design of linear array patch antennas. To adjust the maximum radiation direction and reduce return loss, we optimized the spacing between the elements and their shape. With an element spacing of 11.50 mm, patch width of 3.90 mm, and patch length of 4.15 mm, we obtained a resonance frequency of 20.05 GHz and a return loss of -29.59 dB at the resonance frequency. However, in the case of a 4-element linear array antenna structure, undesired resonances occurred in frequency bands other than the design resonance frequency band of 20 GHz. To suppress these undesired resonances and obtaining stable operation at the design frequency, we propose a new structure in which the feed line is loaded with a short stub, and show through computer simulations that the occurrence of undesired resonances can be sufficiently suppressed. Furthermore, we demonstrate the problem of radiation gain reduction caused by introducing a short stub, propose a design method for a new structure in which the feed line has slits between the stubs, and show improvement of the antenna gain by 0.5 dBi.
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