Utilization of higher-mode resonance in broadening the E-plane HPBW of printed antenna for automotive radar application

Ramesh Patel, K. Han
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引用次数: 12

Abstract

In this paper, a utilization of higher-mode resonance in broadening the E-plane HPBW of printed antenna is presented. We have combined the dominant TM010 mode resonance of inner resonator with the higher-mode resonance of outer resonator at same frequency level, in order to modify E-plane beamwidth, gain (E & H plane) and radiation efficiency of higher-mode resonance of outer resonator. To generate both modes at the same frequency, a quad-split ring shape patch is placed around the edges of inner patch antenna and single gap coupled microstrip feed is employed between the two resonators. The E-plane radiation pattern of the outer resonator (having dip at 0°) is combined with a directional E-plane radiation pattern of inner resonator due to same polarization level of both resonators. By using the above technique, up to 37.2 % increase in E-plane beamwidth (as compared to conventional patch antenna) and 71.5 % radiation efficiency is achieved.
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利用高模共振技术拓宽汽车雷达印刷天线e面高波宽
本文提出了利用高模共振来展宽印刷天线e面高波宽的方法。我们将内腔的优势TM010模式共振与外腔的高模共振在相同的频率水平上结合起来,以改变外腔高模共振的E面波束宽度、E面和H面增益和辐射效率。为了产生相同频率的两种模式,在内贴片天线的边缘放置一个四裂环形贴片,并在两个谐振器之间使用单间隙耦合微带馈电。由于外腔和内腔的极化水平相同,外腔(倾角为0°)的e面辐射图与内腔的定向e面辐射图相结合。通过使用上述技术,与传统贴片天线相比,e平面波束宽度增加了37.2%,辐射效率提高了71.5%。
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