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On the Reduction of the Reconstruction Bias in Synthetic Aperture Imaging Radiometry

机译:减少合成孔径成像放射学中的重建偏见

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Synthetic aperture imaging radiometers (SAIRs) are powerful instruments for high-resolution observation of planetary surfaces at low microwave frequencies. This paper is concerned with the reconstruction of radiometric brightness temperature maps from SAIR interferometric measurements. Even in the absence of modeling errors and radiometric noise, a systematic error, or bias, has been observed in the reconstructed maps. The origin of this bias is analyzed and an efficient solution is proposed for reducing it. The core reconstruction procedure is not changed, and no additional measurements are needed. Throughout the scientific rationale, particular emphasis is laid on numerical simulations carried out for the Soil Moisture and Ocean Salinity space mission, a project led by the European Space Agency and devoted to the remote sensing of soil moisture and ocean salinity from a low-orbit platform
机译:合成孔径成像辐射计(SAIR)是强大的仪器,可在低微波频率下高分辨率观察行星表面。本文涉及通过SAIR干涉测量法重建辐射亮度温度图。即使在没有建模误差和辐射噪声的情况下,在重建地图中也观察到系统误差或偏差。分析了这种偏差的根源,并提出了一种有效的解决方案来降低偏差。核心重建程序不会更改,并且不需要其他测量。在整个科学原理中,特别强调了对土壤水分和海洋盐度太空任务进行的数值模拟,这是由欧洲航天局领导的一个项目,致力于从低轨道平台遥感土壤水分和海洋盐度

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