• CN:11-2187/TH
  • ISSN:0577-6686

›› 2010, Vol. 46 ›› Issue (18): 29-35.

• 论文 • 上一篇    下一篇

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基于刚体位移的天线反射面拟合新算法

马增祥;杨德华;王淑青;程景全   

  1. 中国科学院国家天文台南京天文光学技术研究所;中国科学院天文光学技术重点实验室;中国科学院研究生院;中国科学院国家天文台;美国国立射电天文台
  • 发布日期:2010-09-20

Antenna Reflector Surface Fitting Algorithm Based on Rigid Body Displacement Principle

MA Zengxiang;YANG Dehua;WANG Shuqing;CHENG Jingquan   

  1. National Astronomical Observatories/Nanjing Institute of Astronomical Optics & Technology, Chinese Academy of Sciences Key Laboratory of Astronomical Optics & Technology, anjing Institute of Astronomical Optics & Technology, Chinese Academy of Sciences
  • Published:2010-09-20

摘要: 射电望远镜和雷达天线的反射面的加工误差和变形直接影响系统的工作性能。为准确计算反射面的实际误差,一般须对变形后的反射面进行最佳抛物面拟合。基于刚体空间运动原理,提出一种利用确定刚体位移的6自由度及抛物面的焦距共7个广义自由度来拟合空间抛物面的新方法。通过该方法可直接求得最佳抛物面的顶点空间位置、轴线方向及其焦距。回顾传统的由一般二次曲面推出特征值的抛物面拟合法和小变形下基于法向偏差的抛物面拟合方法,并通过计算实例与之进行比较。验证了方法的稳定性和精确性。同时还集成了一种简便的拟合误差求解方法。

关键词: 刚体位移, 抛物面拟合, 误差, 自由度, 最小二乘法, 坐标变换

Abstract: Manufacture errors and deformation of a radio telescope or radar antenna reflector have a direct effect on the system performance. To precisely figure out the actual surface error of a reflector, a best paraboloid fitting for the deformed reflector is necessary, Based on the space motion principle of a rigid body, a novel algorithm on paraboloid fitting is developed, which introduces 7 generalized degrees of freedom (DOF) defined as the 6 rigid body DOFs and the focal length of the paraboloid. The orientation and vertex position as well as the best focal length of the required best-fit paraboloid are explicitly computed by the least square procedure. Traditional fitting strategies based on quadric surface eigenvalues extraction and on normal deviation minimization with small deformation are reviewed and afterwards compared with the provided new method with examples. The application demonstrates the stability and accuracy of the proposed algorithm. Moreover, a simple error estimation method based on iteration concept is also included.

Key words: Coordinate transformation, Degrees of freedom, Errors, Least squares, Paraboloid surface fitting, Rigid body displacement

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