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Developmental cryogenic active telescope testbed: a wavefront sensing and control testbed for the Next-Generation Space Telescope

机译:发展中的低温有源望远镜试验台:下一代太空望远镜的波前传感和控制试验台

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Abstract: As part of the technology validation strategy of the next generation space telescope (NGST), a system testbed is being developed at GSFC, in partnership with JPL and Marshall Space Flight Center, which will include al of the component functions envisioned in an NGST active optical system. The system will include an actively controlled, segmented primary mirror, actively controlled secondary, deformable, and fast steering mirrors, wavefront sensing optics, wavefront control algorithms, a telescope simulator module, and an interferometric wavefront sensor for use in comparing final obtained wavefronts from different tests. The developmental cryogenic active telescope testbed will be implemented in three phase. Phase 1 will focus on operating the testbed at ambient temperature. During Phase 2, a cryocapable segmented telescope will be developed and cooled to cryogenic temperature to investigate the impact on the ability to correct the wavefront and stabilize the image. In Phase 3, it is planned to incorporate industry developed flight-like components, such as figure controlled mirror segments, cryogenic, low hold power actuators, or different wavefront sensing and control hardware or software. A very important element of the program is the development and subsequent validation of the integrated multidisciplinary models. The phase 1 testbed objectives, plans, configuration, and design will be discussed. !9
机译:摘要:作为下一代太空望远镜(NGST)技术验证策略的一部分,GSFC正在与JPL和马歇尔太空飞行中心合作开发系统测试台,其中将包括NGST中设想的所有组件功能主动光学系统。该系统将包括一个主动控制的分段主镜,主动控制的次要镜,可变形和快速转向镜,波前传感光学器件,波前控制算法,望远镜模拟器模块和干涉波前传感器,用于比较从不同角度最终获得的波前测试。发展中的低温有源望远镜试验台将分三个阶段实施。第1阶段的重点是在环境温度下运行测试平台。在第2阶段,将开发可冷冻的分段式望远镜并将其冷却至低温,以研究对校正波前和稳定图像能力的影响。在第3阶段中,计划并入业界开发的类似飞行的组件,例如图形控制镜段,低温,低保持功率致动器或不同的波前传感和控制硬件或软件。该程序的一个非常重要的元素是集成多学科模型的开发和后续验证。将讨论第1阶段测试平台的目标,计划,配置和设计。 !9

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