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Advanced Precipitation Radar Antenna: Array-Fed Offset Membrane Cylindrical Reflector Antenna

机译:先进的降水雷达天线:阵列馈电偏置膜式圆柱反射天线

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As part of the overall NASA earth science technology research effort, a half-size prototype model of light-weight, dual-frequency and wide-swath scanning antenna for the next generation of spaceborne precipitation radar has recently been developed. It operates radar channels at both 13.6 and 35 GHz for improved rainfall retrieval accuracy. The antenna for proposed spaceborne precipitation radar is an offset parabolic cylindrical reflector fed by two linear arrays. This design is adopted, instead of a doublecurved offset reflector, because it provides the required wide scan angle in the cross-track plane at both the Ku and Ka band operating frequencies. To demonstrate the technological readiness of the concept, the focus is on a half-scale model of 2.65 m operating at Ku and Ka band. In this paper, the technology development status on this Advanced Precipitation Radar Antenna will be presented. Design and characterization of the 2.65 m antenna is detailed by presenting the features of various components of the antenna, including simulation of the performance, 2 X 166 Ku and 4 X 166 Ka element feed array designs and evaluation and the design concept of the membrane reflector. Measurement results of the entire antenna system using a compact range facility will also be summarized.
机译:作为整个NASA地球科学技术研究工作的一部分,最近已经开发出了用于下一代星载降水雷达的轻巧,双频和宽幅扫描天线的半尺寸原型模型。它可以在13.6 GHz和35 GHz的频率上运行雷达信道,以提高降雨量的获取精度。建议的星载降水雷达的天线是由两个线性阵列馈电的偏置抛物柱面反射器。之所以采用这种设计,是因为它在Ku和Ka频段的工作频率下都能在交叉轨道平面内提供所需的宽扫描角,而不是使用双曲线偏移反射器。为了证明这一概念的技术可行性,重点是在Ku和Ka波段运行的2.65 m半尺度模型。在本文中,将介绍该先进降水雷达天线的技术发展状况。通过介绍天线各个组件的功能,详细介绍了2.65 m天线的设计和特性,包括性能仿真,2 X 166 Ku和4 X 166 Ka元件馈电阵列设计和评估以及膜反射器的设计概念。还将总结使用紧凑范围设备的整个天线系统的测量结果。

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