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Thermal Infrared Imaging Experiments of C-Type Asteroid 162173 Ryugu on Hayabusa2

机译:Hayabusa2上C型小行星162173 Ryugu的热红外成像实验

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摘要

The thermal infrared imager TIR onboard Hayabusa2 has been developed to investigate thermo-physical properties of C-type, near-Earth asteroid 162173 Ryugu. TIR is one of the remote science instruments on Hayabusa2 designed to understand the nature of a volatile-rich solar system small body, but it also has significant mission objectives to provide information on surface physical properties and conditions for sampling site selection as well as the assessment of safe landing operations. TIR is based on a two-dimensional uncooled micro-bolometer array inherited from the Longwave Infrared Camera LIR on Akatsuki (Fukuhara et al., 2011). TIR takes images of thermal infrared emission in 8 to 12 μm with a field of view of 16×12∘ and a spatial resolution of 0.05∘ per pixel. TIR covers the temperature range from 150 to 460 K, including the well calibrated range from 230 to 420 K. Temperature accuracy is within 2 K or better for summed images, and the relative accuracy or noise equivalent temperature difference (NETD) at each of pixels is 0.4 K or lower for the well-calibrated temperature range. TIR takes a couple of images with shutter open and closed, the corresponding dark frame, and provides a true thermal image by dark frame subtraction. Data processing involves summation of multiple images, image processing including the StarPixel compression (Hihara et al., 2014), and transfer to the data recorder in the spacecraft digital electronics (DE). We report the scientific and mission objectives of TIR, the requirements and constraints for the instrument specifications, the designed instrumentation and the pre-flight and in-flight performances of TIR, as well as its observation plan during the Hayabusa2 mission.
机译:Hayabusa2上的红外热像仪TIR已开发用于研究C型近地小行星162173 Ryugu的热物理性质。 TIR是Hayabusa2上的一种远程科学仪器,旨在了解易挥发的太阳系小天体的性质,但它也具有重要的任务目标,可提供有关表面物理特性和条件的信息,以供采样地点选择以及评估安全着陆作业。 TIR基于从Akatsuki上的Longwave Infrared Camera LIR继承而来的二维非冷却微辐射热计阵列(Fukuhara等,2011)。 TIR拍摄8至12μm的红外热图像,视野为16×12∘,每像素的空间分辨率为0.05∘。 TIR覆盖150至460 K的温度范围,包括经过良好校准的230至420 K的温度范围。对于合计图像,温度精度在2 K或更佳之内,并且每个像素的相对精度或噪声等效温差(NETD)良好校准的温度范围为0.4 K或更低。 TIR会在快门打开和关闭的情况下拍摄几张图像(对应的暗框),并通过减去暗框来提供真实的热图像。数据处理涉及多个图像的求和,包括StarPixel压缩的图像处理(Hihara等,2014),并传输到航天器数字电子设备(DE)中的数据记录器。我们报告了TIR的科学和任务目标,仪器规格的要求和约束条件,TIR的设计仪器,飞行前和飞行中的性能以及在Hayabusa2任务期间的观察计划。

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