首页> 外文会议>Conference on UV, Optical, and IR Space Telescopes and Instruments 29-31 March 2000 Munich, Germany >Novel estimator for the aberrations of a space telescope by phase diversity
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Novel estimator for the aberrations of a space telescope by phase diversity

机译:通过相位分集的新型太空望远镜像差估计器

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In this communication, we propose a novel method for estimating the aberrations of a space telescope from phase diversity data. The images recorded by such a telescope can be degraded by optical aberrations due to design, fabrication or misalignments. Phase diversity is a technique that allows the estimation of aberrations. The only estimator found in the relevant literature is based on a joint estimation of the aberrated phase and the observed object. by means of simulations, we study the behavior of this estimator. We propose a novel marginal estimator of the sole phase by Maximum Likelihood. It is obtained by integrating the observed object out fo the problem; indeed, this object is a nuisance parameter in our problem. This reduces drastically the number of unknown and provides better asymptotic properties. This estimator is implemented and its properties are validated by simulation. Its performance is equal or even better than that of the joint estimator for the same computing cost.
机译:在此通信中,我们提出了一种新的方法,用于根据相位分集数据估算空间望远镜的像差。由于设计,制造或未对准,这种望远镜记录的图像可能会因光学像差而下降。相位分集是一种允许估计像差的技术。在相关文献中发现的唯一估计器是基于对像差相位和观测对象的联合估计。通过模拟,我们研究了该估计量的行为。我们通过最大似然法提出了一种唯一的边际边际估计器。它是通过将观察到的对象整合到问题中而获得的;实际上,这个对象是我们问题中的一个令人讨厌的参数。这大大减少了未知数,并提供了更好的渐近性质。实现该估计器,并通过仿真验证其属性。对于相同的计算成本,它的性能与联合估计器的性能相同甚至更好。

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