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Active optics as enabling technology for future large missions: current developments for astronomy and Earth observation at ESA

机译:有源光学作为未来大型任务的使能技术:ESA天文学和地球观测的最新发展

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In recent years, a trend for higher resolution has increased the entrance apertures of future optical payloads for both Astronomy and Earth Observation most demanding applications, resulting in new opto-mechanical challenges for future systems based on either monolithic or segmented large primary mirrors. Whether easing feasibility and schedule impact of tight manufacturing and integration constraints or correcting mission-critical in-orbit and commissioning effects, Active Optics constitutes an enabling technology for future large optical space instruments at ESA and needs to reach the necessary maturity in time for future mission selection and implementation. We present here a complete updated overview of our current R&D activities in this field, ranging from deformable space-compatible components to full correction chains including wavefront sensing as well as control and correction algorithms. We share as well our perspectives on the way-forward to technological maturity and implementation within future missions.
机译:近年来,高分辨率的趋势已经增加了未来天文学和地球观测最苛刻应用的光学有效载荷的入口孔径,从而给基于单片或分段大型主镜的未来系统带来了新的光机械挑战。无论是缓解严格的制造和集成约束的可行性和时间表影响,还是纠正关键任务的在轨和试运行效果,Active Optics都是ESA未来大型光学空间仪器的一项使能技术,并且需要及时达到必要的成熟度,以进行未来的任务选择和实施。我们在此展示了我们在该领域当前研发活动的完整更新概述,从可变形的空间兼容组件到完整的校正链,包括波前感测以及控制和校正算法。我们也分享我们对未来任务中技术成熟度和实施方式的看法。

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