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Motion Blurred Star Image Restoration Based on MEMS Gyroscope Aid and Blur Kernel Correction

机译:基于MEMS陀螺仪辅助和模糊内核校正的运动模糊的星形图像恢复

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Under dynamic conditions, motion blur is introduced to star images obtained by a star sensor. Motion blur affects the accuracy of the star centroid extraction and the identification of stars, further reducing the performance of the star sensor. In this paper, a star image restoration algorithm is investigated to reduce the effect of motion blur on the star image. The algorithm includes a blur kernel calculation aided by a MEMS gyroscope, blur kernel correction based on the structure of the star strip, and a star image reconstruction method based on scaled gradient projection (SGP). Firstly, the motion trajectory of the star spot is deduced, aided by a MEMS gyroscope. Moreover, the initial blur kernel is calculated by using the motion trajectory. Then, the structure information star strip is extracted by Delaunay triangulation. Based on the structure information, a blur kernel correction method is presented by utilizing the preconditioned conjugate gradient interior point algorithm to reduce the influence of bias and installation deviation of the gyroscope on the blur kernel. Furthermore, a speed-up image reconstruction method based on SGP is presented for time-saving. Simulated experiment results demonstrate that both the blur kernel determination and star image reconstruction methods are effective. A real star image experiment shows that the accuracy of the star centroid extraction and the number of identified stars increase after restoration by the proposed algorithm.
机译:在动态条件下,将运动模糊引入由星传感器获得的星形图像。运动模糊会影响星形质心提取的准确性和恒星的识别,进一步降低了星传感器的性能。在本文中,研究了星形图像恢复算法,以减少运动模糊对星图像的影响。该算法包括模糊核计算由一个MEMS陀螺仪辅助,基于星带的结构模糊核校正,并且基于缩放梯度投影(SGP)的星形图像重建方法。首先,推导出恒星点的运动轨迹,通过MEMS陀螺仪辅助。此外,通过使用运动轨迹计算初始模糊内核。然后,结构信息星条带由Delaunay三角剖分提取。基于结构信息,通过利用预处理的共轭梯度内部点算法来呈现模糊内核校正方法,以减少陀螺仪在模糊内核上的偏置和安装偏差的影响。此外,介绍了基于SGP的加速图像重建方法以节省时间。模拟实验结果表明,模糊内核测定和星形图像重建方法都是​​有效的。真正的星形图像实验表明,通过所提出的算法恢复后恒星质心提取的准确性和鉴定的恒星的数量增加。

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