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首页> 外文期刊>Journal of atmospheric and oceanic technology >Radiometric and Spectral Characteristics of the ScaRaB-3 Instrument on Megha-Tropiques: Comparisons with ERBE, CERES, and GERB
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Radiometric and Spectral Characteristics of the ScaRaB-3 Instrument on Megha-Tropiques: Comparisons with ERBE, CERES, and GERB

机译:Mcaha-Tropiques上ScaRaB-3仪器的辐射和光谱特性:与ERBE,CERES和GERB的比较

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The Indian-French Megha-Tropiques mission, scheduled to be launched in 2010, will carry radiation and microwave sensors to study the energy and water cycle in the tropics. The radiation sensor, the third model of the Scanner for Radiation Budget (ScaRaB-3), is dedicated to the earth's radiation budget, the difference between the solar absorbed flux and the terrestrial emitted flux. These fluxes are calculated from satellite measurements of outgoing shortwave (SW) and longwave (LW) radiances using angular distribution models (ADMs). For practical reasons, the LW radiation is calculated from the difference between a total (T) channel (0.2-100 μm) and an SW channel (0.2-4 μm). With the ADM application, the radiance calibration remains the most critical issue in the radiation budget estimation. The 1 % accuracy goal is difficult to achieve, specifically in the SW domain. The authors explain their efforts to improve the radiometric calibration of ScaRaB-3. The internal calibration module is improved: the sensor is switched between SW and T channels by rotating the filter wheel on which the SW filter is now installed. Because the pyroelectric detector is sensitive to the thermal effect of the electromagnetic radiation independently of its spectral range, this plan allows calibrating the SW channel as a T channel by viewing a blackbody. Indeed, the transfer of the T calibration to the SW domain requires perfect knowledge of the total spectral response and of the transmittance of the SW filter, which is discussed in the article. Spectral errors are calculated with updated data. In the SW domain, they are found to be the smallest compared to those of the Earth Radiation Budget Experiment (ERBE), the Clouds and the Earth's Radiant Energy System (CERES), and the Geostationary Earth Radiation Budget (GERB).
机译:预定于2010年启动的印度-法国Megha-Tropiques任务将搭载辐射和微波传感器,以研究热带地区的能量和水循环。辐射传感器是“辐射预算扫描仪”(ScaRaB-3)的第三种型号,专门用于地球的辐射预算,太阳吸收通量与地面发射通量之差。这些通量是使用角度分布模型(ADM)根据卫星对短波(SW)和长波(LW)辐射的测量得出的。出于实际原因,LW辐射是根据总(T)通道(0.2-100μm)和SW通道(0.2-4μm)之间的差异计算的。对于ADM应用,辐射校准仍然是辐射预算估算中最关键的问题。 1%的精度目标很难实现,特别是在软件领域。作者解释了他们为改善ScaRaB-3的辐射定标所做的努力。内部校准模块得到了改进:通过旋转现在安装了SW滤波器的滤镜轮,可以在SW和T通道之间切换传感器。由于热释电探测器对电磁辐射的热效应敏感,而与光谱范围无关,因此该计划允许通过查看黑体将SW通道校准为T通道。实际上,将T校准转移到SW域需要完全了解总光谱响应和SW滤波器的透射率,这将在本文中进行讨论。使用更新的数据计算光谱误差。在西南域,与地球辐射预算实验(ERBE),云和地球辐射能系统(CERES)以及地球静止地球辐射预算(GERB)相比,它们的体积最小。

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