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Characterization of errors in the use of integrating-sphere systems in the calibration of scanning radiometers

机译:在扫描辐射计的校准中使用积分球系统时的误差特征

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摘要

Laboratory measurements were performed to characterize the geometrical effects in the calibration of the NASA's cloud absorption radiometer (CAR). The measurements involved three integrating sphere sources (ISSs) operated at different light levels and experimental setups to determine radiance variability. The radiance gradients across the three ISS apertures were 0.2%—2.6% for different visible, near-infrared, and shortwave infrared illumination levels but < 15% in the UV. Change in radiance with distance was determined to be 2%—20%, being highest in the UV. Radiance variability due to the edge effects was found to be significant; as much as 70% due to the sphere aperture and < 10% due to the CAR telescope's secondary mirror.
机译:在NASA的云吸收辐射计(CAR)的校准中进行了实验室测量,以表征几何效应。测量涉及在不同的光照水平下运行的三个积分球源(ISS)和实验装置,以确定辐射的可变性。对于不同的可见光,近红外和短波红外照明水平,三个ISS孔径上的辐射梯度为0.2%至2.6%,但在UV中小于15%。辐射度随距离的变化确定为2%–20%,在UV中最高。发现由于边缘效应造成的辐射变化很大;高达70%是由于球面光圈,而<10%是由于CAR望远镜的辅助镜。

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