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首页> 外文期刊>IEEE Transactions on Aerospace and Electronic Systems >Conceptual reconfigurable antenna for 35 GHz high-resolution spaceborne synthetic aperture radar
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Conceptual reconfigurable antenna for 35 GHz high-resolution spaceborne synthetic aperture radar

机译:用于35 GHz高分辨率星载合成孔径雷达的概念可重构天线

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An innovative Cassegrain antenna for spaceborne synthetic aperture radar (SAR) utilizes a reconfigurable feed array for scene grazing angles from 15° to 70° to produce the largest antenna beam footprints that are circular and to maintain high efficiency or the transmitter. The antenna has a beam waveguide input and the feed array is located in this waveguide. The feed array of transmit-receive modules is reconfigured to vary the illumination shape and area of the radiating portion of the antenna. Each transmit device operates at its full power for maximum efficiency, and the number of devices is determined by the required power. Single-point design for a 35 GHz SAR in a 700 km altitude orbit is presented to detect terrain with 0.1 m resolution. The antenna is a 19.6 m2 elliptical reflector, the power density at the aperture is 25.5 W/m2, and 500 W maximum average power is required. Compared to X-band, 1) the 35 GHz design requires a much smaller antenna, 2) high resolution requires less percentage bandwidth, and 3) integration requirements are less demanding. For comparison, a 9 GHz SAR point design is included for grazing angles of 15° and 70°.
机译:一种创新的用于太空合成孔径雷达(SAR)的Cassegrain天线,采用可重新配置的馈源阵列,用于从15°到70°的场景掠射角,以产生最大的圆形圆形天线波束,并保持发射器的高效率。天线具有波束波导输入,并且馈电阵列位于该波导中。重新配置发射-接收模块的馈电阵列,以改变照明形状和天线辐射部分的面积。每个发射设备均以其最大功率工作,以实现最大效率,并且设备数量由所需功率决定。提出了在700 km高度轨道上进行35 GHz SAR的单点设计,以检测0.1 m分辨率的地形。天线是一个19.6平方米的椭圆形反射镜,孔径处的功率密度为25.5 W / m2,并且需要500 W的最大平均功率。与X波段相比,1)35 GHz设计需要更小的天线,2)高分辨率需要更少的带宽百分比,3)集成要求不那么严格。为了进行比较,提供了9 GHz SAR点设计,用于15°和70°的掠射角。

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