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Design and Performance Evaluation of Sensors and Actuators for Advanced Optical Systems

机译:先进光学系统传感器和执行器的设计和性能评估

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Current state-of-the-art commercial sensors and actuators do not meet many of NASA's next generation spacecraft and instrument needs. Nor do they satisfy the DoD needs for satellite missions, especially microano satellite missions. In an effort to develop advanced optical devices and instruments that meet mission requirements, NASA Langley recently completed construction of a new cleanroom housing equipment capable of fabricating high performance active optic and adaptive optic technologies including deformable mirrors, reconfigurable lenses (both refractive and diffractive), spectrometers, spectro-polarimeters, tunable filters and many other active optic devices. In addition to performance, these advanced optic technologies offer advantages in speed, size, weight, power consumption, and radiation tolerance. The active optic devices described in this paper rely on birefringent liquid crystal materials to alter either the phase or the polarization of the incoming light. Design considerations and performance evaluation results for various NASA applications are presented. Applications presented will include large space telescopes, optical communications, spacecraft windows, coronagraphs, and star trackers.
机译:当前最先进的商用传感器和执行器无法满足许多NASA下一代航天器和仪器的需求。它们也不能满足国防部对卫星任务(尤其是微型/纳米卫星任务)的需求。为了开发满足任务要求的先进光学设备和仪器,NASA兰利公司最近完成了新的无尘室外壳设备的建造,该设备能够制造高性能有源光学和自适应光学技术,包括可变形反射镜,可重构透镜(折射和衍射),光谱仪,光谱偏振仪,可调滤波器和许多其他有源光学设备。除了性能之外,这些先进的光学技术还具有速度,尺寸,重量,功耗和辐射耐受性方面的优势。本文所述的有源光学器件依靠双折射液晶材料来改变入射光的相位或偏振。介绍了各种NASA应用程序的设计注意事项和性能评估结果。展示的应用将包括大型太空望远镜,光学通信,航天器窗户,日冕仪和恒星跟踪仪。

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