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首页> 外文期刊>Environmental Monitoring and Assessment >INTERFEROMETRIC MICROWAVE RADIOMETERS FOR HIGH-RESOLUTION IMAGING OF THE ATMOSPHERE BRIGHTNESS TEMPERATURE BASED ON THE ADAPTIVE CAPON SIGNAL PROCESSING ALGORITHM
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INTERFEROMETRIC MICROWAVE RADIOMETERS FOR HIGH-RESOLUTION IMAGING OF THE ATMOSPHERE BRIGHTNESS TEMPERATURE BASED ON THE ADAPTIVE CAPON SIGNAL PROCESSING ALGORITHM

机译:基于自适应信号处理算法的大气光度温度高分辨率成像的干涉式微波辐射计

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摘要

Passive microwave remote sensing from satellites and ground stations has contributed uniquely, and substantially, to the study of atmospheric chemistry, meteorology, and environmental monitoring. As user requirements are raised, in terms of the accuracy and the spatial resolution, a mechanically scanning radiometer, with a real aperture, becomes impractical due to the requirement for a very large antenna size. However, an aperture synthesis interferometric radiometer presents a valuable alternative. The work presented in this paper was devoted to high spatial resolution imaging, using the 37 GHz band interferometric radiometer, developed by ourselves. The spatially adaptive Capon beamforming method was exploited for the imaging, which outperformed the conventional Fourier Transform method. We concluded that the high spatial resolution imaging of the brightness temperature of the atmosphere could be accomplished with an interferometric radiometer equipped with the developed Capon beamforming imaging algorithm.
机译:来自卫星和地面站的无源微波遥感对大气化学,气象学和环境监测的研究做出了独特而重大的贡献。随着用户需求的提高,就精度和空间分辨率而言,由于需要非常大的天线尺寸,具有真实孔径的机械扫描辐射计变得不切实际。然而,孔径合成干涉辐射计提供了一种有价值的选择。本文介绍的工作使用了我们自己开发的37 GHz波段干涉辐射计,致力于高空间分辨率成像。利用空间自适应Capon波束形成方法进行成像,其性能优于传统的Fourier变换方法。我们得出的结论是,可以使用配备有改进的Capon波束形成成像算法的干涉辐射计来对大气的亮度温度进行高空间分辨率成像。

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