Terrestrial and space-based RFI observed by the GPM microwave imager (GMI) within NTIA semi-protected passive earth exploration bands at 10.65 and 18.7 GHz

D. Draper
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引用次数: 8

Abstract

The Global Precipitation Measurement (GPM) Microwave Imager provides a valuable case study to evaluate levels and distribution of observable radio frequency interference (RFI) in semi-protected bands above 10 GHz from terrestrial and space-based sources. The GMI views the earth from a variety of different observation geometries and polarizations. The GMI detects significant earth-based RFI at 10.65 GHz over Europe, Middle East, Asia, and Mexico. In addition, 18.7 GHz channels GMI sense RFI reflected from the ocean, lakes, and frozen terrain in and around the continental United States originating from direct broadcast satellites. Over the first 2.5 years of GMI operations, the RFI levels have not significantly changed except over China, where 10 GHz RFI has significantly increased.
GPM微波成像仪(GMI)在NTIA半保护被动对地探测波段10.65和18.7 GHz观测到的陆基和天基RFI
全球降水测量(GPM)微波成像仪提供了一个有价值的案例研究,用于评估来自地面和天基源的10 GHz以上半保护频段可观测射频干扰(RFI)的水平和分布。GMI从各种不同的观测几何形状和偏振角度来观察地球。GMI探测到欧洲、中东、亚洲和墨西哥上空10.65 GHz的地面射频信号。此外,18.7 GHz频道的GMI感知来自美国大陆及其周围的海洋、湖泊和冰冻地形反射的射频信号,这些信号来自直接广播卫星。在GMI运行的前2.5年里,除了中国以外,RFI水平没有显著变化,其中10 GHz RFI显著增加。
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