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An Array-Compensated Spherical Reflector Antenna for a Very Large Number of Scanned Beams

机译:用于大量扫描光束的阵列补偿球面反射天线

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摘要

There are many stringent demands imposed on the applications of spaceborne antenna systems. One of the most challenging demands is the generation of multiple beams with the ability to scan a very large number of beamwidths. Since the parabolic reflectors have limitations in this application, a 35-m spherical reflector antenna is proposed for a geostationary radar antenna at Ka-band (35.6 GHz) due to its inherent capability of scanning the beams to very large number of beamwidths. The utility of using planar array feeds for correcting spherical phase aberrations is investigated to overcome the performance degradation effects. Two different methodologies are developed for the array excitation coefficients determination based on phase conjugate matching and the results are compared. Using the compensating feed array, the radiation characteristics of the compensated spherical reflector are simulated for no scan and large scan cases and the results are compared with the uncompensated case to show performance improvement. In order to demonstrate the technological readiness of the concept a 1.5-m breadboard model is designed to be built for experimental measurements. Some important mechanical design tolerances and realistic array feed topologies are investigated. The antenna concept developed in this paper is advocated to be used in the next generation of geostationary satellite antenna systems for remote sensing radar applications.
机译:对星载天线系统的应用有许多严格的要求。最具挑战性的需求之一是生成具有扫描大量光束宽度能力的多束光束。由于抛物面反射器在此应用中存在局限性,由于其固有的将波束扫描到非常大的波束宽度的能力,因此建议将35 m球形反射器天线用于Ka波段(35.6 GHz)的对地静止雷达天线。为了克服性能下降的影响,研究了使用平面阵列馈源校正球形相差的实用性。开发了两种基于相位共轭匹配的阵列激励系数确定方法,并对结果进行了比较。使用补偿馈源阵列,模拟了无扫描和大扫描情况下补偿球面反射器的辐射特性,并将结果与​​未补偿情况进行了比较,以显示性能的提高。为了证明该概念的技术就绪性,设计了一个1.5米的面包板模型用于实验测量。研究了一些重要的机械设计公差和实际的阵列馈电拓扑。本文中提出的天线概念被提倡用于下一代遥感雷达应用的地球同步卫星天线系统中。

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