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首页> 外文期刊>Chinese Astronomy and Astrophysics >Blind Deconvolution of Astronomical Images with a Constraint on Bandwidth Determined by the Parameters of the Optical System
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Blind Deconvolution of Astronomical Images with a Constraint on Bandwidth Determined by the Parameters of the Optical System

机译:由光学系统参数确定的带宽受限的天文图像的盲反卷积

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摘要

Atmospheric turbulence severely restricts the spatial resolution of astronomical images obtained by a large ground-based telescope. In order to reduce effectively this effect, we propose a method of blind deconvolution, with a bandwidth constraint determined by the parameters of the telescope's optical system based on the principle of maximum likelihood estimation, in which the convolution error function is minimized by using the conjugate gradient algorithm. A relation between the parameters of the telescope optical system and the image's frequency-domain bandwidth is established, and the speed of convergence of the algorithm is improved by using the positivity constraint on the variables and the limited-bandwidth constraint on the point spread function. To avoid the effective Fourier frequencies exceed the cut-off frequency, it is required that each single image element (e.g., the pixel in the CCD imaging) in the sampling focal plane should be smaller than one fourth of the diameter of the diffraction spot. In the algorithm, no object-centered constraint was used, so the proposed method is suitable for the image restoration of a whole field of objects. By the computer simulation and by the restoration of an actually-observed image of Piscium, the effectiveness of the proposed method is demonstrated.
机译:大气湍流严重限制了大型地面望远镜获得的天文图像的空间分辨率。为了有效地减少这种影响,我们提出了一种基于最大似然估计原理,由望远镜光学系统的参数确定带宽约束的盲解卷积方法,其中使用共轭将卷积误差函数最小化。梯度算法。建立了望远镜光学系统参数与图像频域带宽之间的关系,并通过对变量的正性约束和对点扩展函数的有限带宽约束,提高了算法的收敛速度。为了避免有效傅立叶频率超过截止频率,要求采样焦平面中的每个单个图像元素(例如CCD成像中的像素)应小于衍射光斑直径的四分之一。该算法没有使用以对象为中心的约束,因此该方法适用于整个对象场的图像恢复。通过计算机仿真和还原实际观察到的Piscium图像,证明了该方法的有效性。

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