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One Novel Distributed Space Telescope With Payload Formation

机译:一个新型分布式空间望远镜,有效载荷形成

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摘要

Large aperture space technology is critical for next-step astrophysics missions with high resolution requirement. The distributed telescope has been proven as an appealing solution to break the technical limitation in obtaining large apertures. However, the stringent interference imaging condition puts forward extremely high control accuracy requirement on the distributed telescope which is still a challenge task and need to be further studied. This paper thus presents one distributed space telescope with payload formation by synthesizing the non-contact electro-magnetic actuators. The distributed optical apertures are connected by using the deployed mechanical structure while the non-contact actuators are further employed for high precision payload formation. Large equivalent aperture is obtained due to the achievable long baseline configuration, in addition, the ultra-high control accuracy of the distributed telescope is guaranteed. The dynamics modeling and the corresponding control strategy are also provided. The effectiveness of the proposed distributed space telescope is evaluated using simulation studies.
机译:大型光圈空间技术对于具有高分辨率要求的下一步天体物理特派团至关重要。分布式望远镜已被证明是一种吸引人的解决方案,以便在获得大孔径时打破技术限制。然而,严格的干扰成像条件对分布式望远镜提出了极高的控制精度要求,这仍然是挑战任务,并且需要进一步研究。因此,本文通过合成非接触式电磁执行器,呈现了一个具有有效载荷形成的分布式空间望远镜。通过使用展开的机械结构连接分布式光学孔,而非接触式致动器进一步采用高精度有效载荷形成。由于可实现的长基线构造,因此获得了大量的等效孔径,另外,保证了分布式望远镜的超高控制精度。还提供了动力学建模和相应的控制策略。使用模拟研究评估所提出的分布式空间望远镜的有效性。

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