首页> 外文会议>SPIE Conference on Remote Sensing of Clouds and the Atmosphere;SPIE Conference on Optics in Atmospheric Propagation and Adaptive Systems >Remote Sensing of Water Clouds Temperature with an IR Camera on Board the ISS in the frame of JEM-EUSO Mission
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Remote Sensing of Water Clouds Temperature with an IR Camera on Board the ISS in the frame of JEM-EUSO Mission

机译:在JEM-EUSO Mission框架中使用IR相机遥感水云温度的温度

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The Extreme Universe Space Observatory (EUSO) is an astronomical telescope that will be hosted by the Japan Experiment Module (JEM) on the International Space Station (ISS). The telescope will determine Ultra High Energy Cosmic Rays properties by measuring the UV fluorescence light emitted by the particles generated in the interaction between the cosmic rays and the atmosphere. Therefore, cloud information is crucial for a proper interpretation of the data. To obtain the cloud top height an IR camera is being designed. The design is constrained by JEM-EUSO requirements which are mainly the instrument weight, power and data rate. These requirements have led to a bi-spectral camera option with 1 μm-wide bands centered at 10.8 and 12 μm. The bi-spectral design has allowed us to develop a Split Window Algorithm to correct the atmospheric effects and retrieve the cloud temperature from the brightness temperatures in the bands aforementioned. The algorithm has been checked in synthetic scenarios at pixel level. The simulations consider clouds at different levels with diverse atmospheric conditions. The results show that the algorithm is able to retrieve the temperature with accuracy much better than the required one by the JEM-EUSO mission of 3K. It has also been tested in 2D real scenarios (MODIS images). The algorithm has been applied to MODIS brightness temperatures in bands 31 and 32 which are similar to those of the IR camera. The temperatures retrieved by the algorithm are in a very good agreement with the cloud top temperatures given by MODIS.
机译:极端宇宙空间天文台(EUSO)是一个天文望远镜,将由国际空间站(ISS)的日本实验模块(JEM)主持。望远镜将通过测量由宇宙射线和大气之间的相互作用中产生的颗粒发出的uV荧光来确定超高能量宇宙射线特性。因此,云信息对于正确解释数据至关重要。为了获得云顶部高度,正在设计IR相机。该设计受到JEM-EUSO要求的限制,主要是仪器重量,功率和数据速率。这些要求导致了双光谱相机选项,其中1μm宽的带以10.8和12μm为中心。双光谱设计使我们能够开发分割窗口算法以校正大气效果并从上述带中的亮度温度检索云温度。在像素级别的合成方案中已检查该算法。模拟在不同级别的云视为不同的大气条件。结果表明,该算法能够以3K的JEM-EUSO任务所需的精度来检索温度。它还在2D实际情况下进行了测试(MODIS图像)。该算法已应用于与IR相机类似的带31和32中的MODIS亮度温度。由算法检索的温度与MODIS给出的云顶温度非常良好。

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