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Wavefront measurement method based on improved light field camera

机译:基于改进光场相机的波前测量方法

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The light field camera is used in the wavefront sensing field because of its simple structure, large field of view, high utilization rate of light energy, etc. However, there are some limitations in the traditional light field camera such as low linearity, the obvious step change of the slope response, low reconstruction accuracy and so on. To overcome the above limitations, this paper has effectively improved the traditional light field camera and proposed a new type of defocused light field camera structure to improve the accuracy of wavefront measurement. Simulation studies show that the reconstruction accuracy of the light field camera varies with the distance between the microlens array (MLA) and the focal plane of the main lens. As the distance increases, the reconstruction accuracy increases first and then decreases, and there is an optimal defocus amount related to the wavefront distortion, which can help to reach the maximum reconstruction accuracy. This method can improve the accuracy of wavefront measurement and have broad application prospects in the fields of astronomical observation, precision detection, remote sensing imaging and so on.
机译:光场摄像机在波前传感领域使用,因为其结构简单,大视野,光能的高利用率等,传统的光场摄像机等诸如低线性度的局限性,显而易见步骤更改斜率响应,重建精度低等级。为了克服上述限制,本文有效地改善了传统的光场相机,提出了一种新型的离焦光场相机结构,提高了波前测量的准确性。仿真研究表明,光场相机的重建精度随着主透镜的微滤网(MLA)和焦平面之间的距离而变化。随着距离的增加,重建精度首先增加,然后减少,并且存在与波前失真相关的最佳散焦量,这有助于达到最大的重建精度。该方法可以提高波前测量的准确性,并在天文观察,精密检测,遥感成像等领域具有广泛的应用前景。

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