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InP HEMT low-noise amplifier-based millimeter-wave radiometers from 90 to 180 GHz with internal calibration for remote sensing of atmospheric wet-path delay

机译:INP HEMT低噪声放大器的毫米波辐射仪从90到180 GHz的内部校准,用于遥感大气湿路延迟

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The recent introduction of 35-nm gate length InP MMIC low-noise amplifiers has enabled significant advances in Earth remote sensing. These low-noise amplifiers achieve 2-dB and 3-dB noise figure at 180 GHz and 90 GHz, respectively, at room temperature. For Earth remote sensing using ocean surface altimeters, the design of new millimeter-wave radiometers is motivated by the fact that these missions include nadir-viewing, co-located 18–37 GHz microwave radiometers to measure wet-tropospheric path delay. However, due to the substantial area of the surface instantaneous fields of view (IFOV) at these frequencies, the accuracy of wet path retrievals begins to degrade at approximately 50 km from the coasts. In addition, conventional microwave radiometers do not provide wet-path delay over land. For a maximum antenna aperture size on Earth observation satellites, the addition of higher-frequency millimeter-wave (90–170 GHz) radiometers to current Jason-class radiometers is expected to improve retrievals of wet-tropospheric delay in coastal areas and to increase the potential for over-land retrievals.
机译:最近推出了35nm门长度INP MMIC低噪声放大器在地球遥感方面已经实现了大量的进步。这些低噪声放大器分别在180GHz和90GHz处实现2dB和3-DB噪声系数,在室温下。对于使用海面高度计的地球遥感,新的毫米波辐射仪的设计是由于这些任务包括Nadir-Viewing,共同定位的18-37GHz微波辐射仪来测量湿 - 对流层路径延迟的事实。然而,由于这些频率的表面瞬时视野(IFOV)的大大面积,湿路路径检索的准确性开始距离海岸约50公里。此外,传统的微波辐射仪不会在陆地上提供湿路延迟。对于地球观察卫星的最大天线孔径尺寸,预计将增加高频毫米波(90-170GHz)辐射仪的辐射仪预计将改善沿海地区的湿 - 流散延迟的检索并增加超陆检索的潜力。

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