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首页> 外文期刊>Applied optics >Wavelet-based depth-of-field extension, accurate autofocusing, and particle pairing for digital inline particle holography
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Wavelet-based depth-of-field extension, accurate autofocusing, and particle pairing for digital inline particle holography

机译:基于小波的景深扩展,精确的自动对焦以及用于数字在线粒子全息术的粒子配对

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摘要

Depth-of-field extension and accurate 3D position location are two important issues in digital holography for particle characterization and motion tracking. We propose a method of locating the axial positions of both opaque and transparent objects in the reconstructed 3D field in the wavelet domain. The spatial-frequency property of the reconstructed image is analyzed from the viewpoint of the point spread function of the digital inline holography. The reconstructed image is decomposed into high- and low-frequency subimages. By using the variance of the image gradient in the subimages as focus metrics, the depth-of-field of the synthesis image can be extended with all the particles focalized, and the focal plane of the object can be accurately determined. The method is validated by both simulated and experimental holograms of transparent spherical water droplets and opaque nonspherical coal particles. The extended-focus image is applied to the particle pairing in a digital holographic particle tracking velocimetry to obtain the 3D vector field.
机译:景深扩展和准确的3D位置定位是数字全息术中用于粒子表征和运动跟踪的两个重要问题。我们提出了一种在小波域的重建3D场中定位不透明和透明对象的轴向位置的方法。从数字在线全息图的点扩展函数的角度分析了重建图像的空间频率特性。重构的图像被分解为高频和低频子图像。通过使用子图像中图像梯度的变化作为聚焦度量,可以在所有粒子都聚焦的情况下扩展合成图像的景深,并且可以准确地确定对象的焦平面。透明球形水滴和不透明非球形煤颗粒的模拟和实验全息图均验证了该方法的有效性。将扩展焦点图像应用于数字全息粒子跟踪测速仪中的粒子配对,以获得3D矢量场。

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