首页> 外文OA文献 >Phase diversity wavefront sensing for control of space based adaptive optics systems
【2h】

Phase diversity wavefront sensing for control of space based adaptive optics systems

机译:相分集波前传感,用于基于空间的自适应光学系统控制

摘要

Phase Diversity Wavefront Sensing (PD WFS) is a wavefront reconstruction technique used in adaptive optics, which takes advantage of the curvature conjugating analog physical properties of a deformable mirror (MMDM or Bi-morph) such that the computational intensity required for correcting an aberrated wavefront, becomes simplified over traditional Shack-Hartmann WFS techniques. By looking at an image reflected off a deformable mirror by two cameras placed on either side of focus of a lens, intensity differences, indicating wavefront aberration in the beam, can be detected by the cameras acting together as a WFS and analyzed by a computer providing control to the actuators of a deformable mirror such that any detected difference in intensities between the two cameras can be minimized. This process of mirror surface conjugation serves to correct for the aberrated or curved wavefront by reflecting a new wavefront, compensated for curvature, such that its reflection is approximately planar. The theory of PD WFS is well documented however, there is very little quantifiable information regarding the specific challenges in designing a functioning PD WFS. In this research a PD WFS was designed and the concept proven such that a wavefront could be corrected through a computer controlled closed loop conjugation of a deformable mirror. The results were analyzed using a traditional Shack-Hartmann WFS and off-the-shelf "Front Surfer" wavefront analysis software to verify the validity of the experimental data. PD WFS has become critical in the development of segmented mirror adaptive optical systems where traditional wavefront reconstruction using Shack-Hartmann wavefront sensing tends to break down at the mirror segment edges. The Naval Postgraduate School, Spacecraft Research and Design Center (SRDC) intends to explore the use of a segmented mirror adaptive optical systems for space based applications.
机译:相位分集波阵面传感(PD WFS)是一种用于自适应光学的波阵面重建技术,该技术利用了可变形镜面(MMDM或Bi-morph)的曲率共轭模拟物理特性,从而校正了畸变波阵面所需的计算强度与传统的Shack-Hartmann WFS技术相比变得更加简化。通过观察放置在透镜焦点两侧的两个摄像头在可变形镜上反射的图像,可以一起充当WFS的摄像头检测到指示光束中波前像差的强度差,并由计算机提供分析控制可变形反射镜的致动器,以使两个摄像机之间检测到的强度差异最小。镜表面共轭的过程通过反射补偿了曲率的新波阵面来校正像差或弯曲的波阵面,以使其反射近似于平面。 PD WFS的理论已被充分证明,但是,有关设计正常运行的PD WFS的具体挑战的信息很少。在这项研究中,设计了PD WFS,并验证了这一概念,从而可以通过计算机控制可变形反射镜的闭环共轭来校正波前。使用传统的Shack-Hartmann WFS和现成的“ Front Surfer”波前分析软件对结果进行了分析,以验证实验数据的有效性。 PD WFS在分段反射镜自适应光学系统的开发中已变得至关重要,在该系统中,使用Shack-Hartmann波前感测的传统波前重建往往会在反射镜段边缘处破裂。海军研究生院,航天器研究与设计中心(SRDC)打算探索将分段反射镜自适应光学系统用于基于空间的应用。

著录项

  • 作者

    Schgallis Richard J.;

  • 作者单位
  • 年度 2007
  • 总页数
  • 原文格式 PDF
  • 正文语种
  • 中图分类

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号