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首页> 外文期刊>IEICE Transactions on Fundamentals of Electronics, Communications and Computer Sciences >Improvement of Beam Scanning Characteristics of a Dielectric Lens Antenna by Array Feeds
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Improvement of Beam Scanning Characteristics of a Dielectric Lens Antenna by Array Feeds

机译:阵列馈电改善介电透镜天线的束扫描特性

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In the Intelligent Transportation System, millimeter waves are used and antennas are required beam scanning ability. In the millimeter wave operation, a lens antenna is one of the prominent candidates which achieves wide angle beam scanning. Wide angle scanning can be achieved by introducing Abbe sine condition to lens surface shaping. Authors designed the shaped lens antenna that could achieve beam scanning ±30°. The narrow beam widths were maintained on the scanning plane. However, the beam widths were broadened on the transverse plane and large gain reduction was appeared. It was clarified that the reason of this beam deterioration was due to the phase delay on the antenna aperture. In this paper, an array feed composed of a group of rectangular horns is employed to compensate the phase delay on the antenna aperture. In designing the array feed, because there were no examples of phase radiation pattern synthesis, a new radiation pattern synthesis method is studied. Ability of the weighting matrix contained in the Least Mean Square synthesis method is paid attention. Adequate weighting matrix is found out. Satisfactory phase radiation pattern that can compensate the phase delay and an adequate amplitude radiation pattern are achieved. As a result, the improvement of scanned beam widths and antenna gains through the array feed are ensured. And adequate horn arrangements of the array feed for improving scanned beam are clarified. Moreover, in order to examine the realization of an actual array feed, the exact electromagnetic simulation is conducted. The validity of the radiation pattern synthesis is clarified.
机译:在智能交通系统中,使用毫米波,并且要求天线具有波束扫描能力。在毫米波操作中,透镜天线是实现广角波束扫描的主要候选天线之一。通过将阿贝正弦条件引入镜片表面整形可以实现广角扫描。作者设计了可实现±30°波束扫描的异形透镜天线。窄光束宽度保持在扫描平面上。但是,光束宽度在横向平面上变宽,并且出现了大的增益减小。可以明确的是,该波束劣化的原因是由于天线孔径的相位延迟引起的。在本文中,采用由一组矩形喇叭组成的阵列馈源来补偿天线孔径上的相位延迟。在设计阵列馈源时,由于没有相位辐射图合成的示例,因此研究了一种新的辐射图合成方法。最小二乘合成法中包含的加权矩阵的能力受到关注。找到足够的加权矩阵。获得了可以补偿相位延迟的令人满意的相位辐射图和足够幅度的辐射图。结果,确保了通过阵列馈送的扫描波束宽度和天线增益的改善。并明确了阵列馈源的足够的喇叭形布置以改善扫描束。此外,为了检查实际阵列馈送的实现,进行了精确的电磁仿真。阐明了辐射图合成的有效性。

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