Bandwidth enhancement of substrate integrated waveguide cavity-backed slot antenna

M. Ulfah, Chairunnisa, A. Munir
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引用次数: 11

Abstract

This paper proposes a technique for bandwidth enhancement of substrate integrated waveguide (SIW) cavity-backed slot antenna. The enhancement of bandwidth is carried out by putting a square metallic plate in the middle of substrate. Since a thin layer of dielectric substrate increases quality factor (Q factor) of the antenna which affects of narrowing bandwidth response, hence the proposed antenna implements multiple layers of FR4 epoxy dielectric substrate in overcoming the problem. The SIW cavity-backed slot antenna is simply excited by a coaxial type of probe extended into square metallic plate which is located at center of the cavity. Some parametric studies are offered for better understanding of the proposed antenna characteristics such as number of slot, angle of tilted slot, separation between slots, and position of square metallic plate. It is found that the use of square metallic plate could produce the second resonant frequency affecting to the bandwidth enhancement. The characterization result shows that the −10dB working bandwidth is about 175MHz in the frequency range of 1.9GHz to 2.075GHz with the fractional bandwidth of 9.2%.
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基板集成波导腔背缝隙天线的带宽增强
提出了一种基片集成波导(SIW)腔背缝隙天线的带宽增强技术。通过在衬底中间放置方形金属板来增强带宽。由于薄层介质基板会增加天线的品质因子(Q因子),从而影响带宽响应的收窄,因此该天线采用多层FR4环氧介质基板来克服这一问题。SIW型腔背槽天线的激励方式是将同轴型探头伸入位于腔中心的方形金属板中。为了更好地理解所提出的天线的特性,如槽数、槽倾斜角度、槽间间距和方形金属板的位置,提供了一些参数研究。发现使用方形金属板会产生二次谐振频率,对带宽增强有影响。表征结果表明,在1.9GHz ~ 2.075GHz频率范围内,−10dB工作带宽约为175MHz,分数带宽为9.2%。
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