首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Inverse problem approach in particle digital holography: out-of-field particle detection made possible
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Inverse problem approach in particle digital holography: out-of-field particle detection made possible

机译:粒子数字全息术中的反问题方法:可以进行场外粒子检测

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摘要

We propose a microparticle detection scheme in digital holography. In our inverse problem approach, we estimate the optimal particles set that best models the observed hologram image. Such a method can deal with data that have missing pixels. By considering the camera as a truncated version of a wider sensor, it becomes possible to detect particles even out of the camera field of view. We tested the performance of our algorithm against simulated and experimental data for diluted particle conditions. With real data, our algorithm can detect particles far from the detector edges in a working area as large as 16 times the camera field of view. A study based on simulated data shows that, compared with classical methods, our algorithm greatly improves the precision of the estimated particle positions and radii. This precision does not depend on the particle's size or location (i.e., whether inside or outside the detector field of view).
机译:我们提出了数字全息术中的微粒检测方案。在我们的反问题方法中,我们估计了最佳的粒子集,该粒子集可以最佳地模拟观察到的全息图像。这种方法可以处理像素丢失的数据。通过将摄像机视为更宽传感器的截断版本,甚至可以在摄像机视场之外检测粒子。我们针对稀释粒子条件下的模拟和实验数据测试了算法的性能。利用真实数据,我们的算法可以在工作区域(距离摄像机视场16倍)中检测远离探测器边缘的粒子。基于模拟数据的研究表明,与经典方法相比,我们的算法大大提高了估计的粒子位置和半径的精度。该精度不取决于粒子的大小或位置(即,在检测器视野之内还是之外)。

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