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Advanced Geosynchronous Studies Imager thermal design

机译:高级地球同步研究成像仪热设计

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The AGSI instrument contains four focal plane arrays (FPAs) including the long wave IR (LWIR), medium wave IR (MWIR), short wave IR (SWIR), and the visible (VIS) FPA. The LWIR and MWIR FPAs are housed in a dewar. The SWIR FPA is housed in a separate dewar. The visible FPA will be located outside of the dewar. The AGSI instrument thermal subsystem is required to maintain the LWIR and MWIR FPAs at 65K, the SWIR FPA at 210 K, and the visible FPA between 210 K and 300 K. The stability of all four FPAs must be $POM 0.1 degrees C. The remainder of the optical system, telescope structure and instrument electronics must be maintained between 0 degrees C and 40 degrees C. Telescope alignment must also be maintained through the cooldown of the instrument optical bench, and during the diurnal and seasonal variations in orbital environment. The thermal design will accommodate such directly in the field-of-view for short periods of time without damage to the instrument, and with the ability to recover science operation quickly. This paper will discuss the thermal design needed to achieve these goals as well as detail the cryocooler and solar intrusion issues.
机译:AGSI仪器包含四个焦平面阵列(FPA),包括长波IR(LWIR),中波IR(MWIR),短波IR(SWIR),以及可见(VI)的FPA。 LWIR和MWIR FPA被置于杜瓦湖。 SWIR FPA被居住在一个单独的杜瓦尔。可见的FPA将位于杜瓦尔的外部。 AGSI仪器热子系统需要在65K处,SWIR FPA处的LWIR和MWIR FPA保持210 k,并且在210 k和300k之间的可见FPA。所有四个FPA的稳定性必须是$ POM 0.1摄氏度。该光学系统的其余部分,望远镜结构和仪器电子器件必须保持在0℃和40摄氏度之间。望远镜对齐也必须通过仪器光学台阶的冷却,以及在轨道环境的昼夜变化期间保持望远镜对齐。热设计将在短时间内直接容纳在视野下,无需损坏仪器,并且能够快速恢复科学操作。本文将讨论实现这些目标所需的热设计以及细节冷冻机和太阳侵入问题。

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