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Design and measurement of W-band offset stepped parabolic reflector antennas for airport surface foreign object debris detection radar systems

机译:用于机场表面异物碎片检测雷达系统的W波段偏置阶梯式抛物面反射器天线的设计和测量

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Debris on the airport surface may cause severe damage to aircraft. To detect these obstacles, foreign object debris (FOD) detection systems have been developed recently. By utilizing high-sensibility and weather robustness characteristics, the millimeter-wave radar is an essential sensor device for these systems. This paper discusses an offset parabolic reflector antenna for airport surface FOD detection radar systems. Firstly, the overview of the FOD detection radar systems, which employs a band of between 92 GHz and 100 GHz, is shown. For the azimuth beam scanning antenna, the antenna is required to achieve both a narrow azimuth beamwidth and a wide elevation beamwidth. Secondly, the stepped parabolic reflector is newly designed to obtain an 8 degree elevation -20 dB down power beamwidth. Finally, the designed reflector is fabricated based on chemical wood materials. The measured result shows the 38 dBi gain and the 8.4 degree beamwidth for the elevation plane.
机译:机场表面的碎屑可能会严重损坏飞机。为了检测这些障碍,近来已经开发了异物碎片(FOD)检测系统。通过利用高灵敏度和耐候性,毫米波雷达是这些系统必不可少的传感器设备。本文讨论了一种用于机场表面FOD检测雷达系统的偏置抛物面反射器天线。首先,显示了使用92 GHz至100 GHz之间频带的FOD检测雷达系统的概述。对于方位波束扫描天线,要求天线既要实现窄的方位波束宽度又要实现宽的仰角波束宽度。其次,阶梯式抛物面反射器经过重新设计,可获得8度的仰角-20 dB的向下功率波束宽度。最后,设计的反射器是基于化学木材材料制成的。测量结果显示,俯仰平面的增益为38 dBi,波束宽度为8.4度。

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