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Proposed adaptive optics control loop for a continuous face sheet, MEMS-based deformable membrane mirror

机译:提出的自适应光学控制回路,用于连续面板,基于MEMS的可变形膜镜

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Small MEMS (Micro-Electro-Mechanical Systems) deformable mirror (DM) technology is of great interest to the adaptive optics (AO) community. These new, MEMS-DM's are being considered for many conventional AO applications since they posses some advantages over conventional DM's. The MEMS-DM technology is driven by the expectation of achieving improved performance with lower costs, low electrical power, high number of actuators, high production rates, and large reductions in structural mass and volume. In addition to the imaging community, the directed energy community is also interested in taking advantages of some of the characteristics which MEMS-DM's offer. The Air Force Research Laboratory has undertaken the challenge of developing and analyzing several continuous face-sheet MEMS-DM's designs. This paper proposes a simple controls loop computer model for a typical continuous reflective face-sheet MEMS-DM. There are a variety of MEMS-DM's which are being developed for the Air Force Research Laboratory. Data from a typical continuous reflective face-sheet MEMS-DM has been acquired and analyzed. From this data a model for a typical MEMS-DM device could be developed and verified. This MEMS-DM's data can be compared to previous design models which were developed in previous articles. In addition a feedback, closed adaptive optics loop can be designed and analyzed. The research goal is to get a realistic idea of the behavior and performance of these new, innovative devices.
机译:小型MEMS(微机电系统)可变形镜(DM)技术对自适应光学(AO)社区具有很大兴趣。这些新的MEMS-DM正在考虑许多传统的AO应用程序,因为它们具有与传统DM的一些优势。 MEMS-DM技术是通过预期实现改进的性能,以降低成本,低电力,大量的执行器,高生产率,高生产率,结构质量和体积的较大减少。除了成像社区之外,定向的能源社区也有兴趣采取MEMS-DM提供的一些特征的优势。空军研究实验室已经开展了开发和分析几种连续面板MEMS-DM设计的挑战。本文提出了一种简单的控制环路计算机模型,用于典型的连续反射面板MEMS-DM。有多种MEMS-DM为空军研究实验室开发。已经获取和分析来自典型连续反射面板MEMS-DM的数据。从此数据可以开发和验证典型MEMS-DM设备的模型。该MEMS-DM的数据可以与先前的设计模型进行比较,这些模型是在以前的文章中开发的。另外,可以设计和分析闭合自适应光学环路的反馈。研究目标是实现这些新的创新设备的行为和性能的现实理念。

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