Tsang P W M, Poon T-C, Cheung K W K
Department of Electronic Engineering, City University of Hong Kong, Hong Kong SAR, China.
Opt Express. 2012 Jun 18;20(13):14183-8. doi: 10.1364/OE.20.014183.
We report a low complexity, non-iterative method for enhancing the sharpness, brightness, and contrast of the pictorial content that is recorded in a digital hologram, without the need of re-generating the latter from the original object scene. In our proposed method, the hologram is first back-projected to a 2-D virtual diffraction plane (VDP) which is located at close proximity to the original object points. Next the field distribution on the VDP, which shares similar optical properties as the object scene, is enhanced. Subsequently, the processed VDP is expanded into a full hologram. We demonstrate two types of enhancement: a modified histogram equalization to improve the brightness and contrast, and localized high-boost-filtering (LHBF) to increase the sharpness. Experiment results have demonstrated that our proposed method is capable of enhancing a 2048x2048 hologram at a rate of around 100 frames per second. To the best of our knowledge, this is the first time real-time image enhancement is considered in the context of digital holography.
我们报告了一种低复杂度、非迭代的方法,用于增强数字全息图中记录的图像内容的清晰度、亮度和对比度,而无需从原始物体场景重新生成全息图。在我们提出的方法中,全息图首先被反向投影到一个二维虚拟衍射平面(VDP),该平面位于与原始物点非常接近的位置。接下来,增强VDP上与物体场景具有相似光学特性的场分布。随后,将处理后的VDP扩展为完整的全息图。我们展示了两种增强类型:一种改进的直方图均衡化以提高亮度和对比度,以及局部高增强滤波(LHBF)以增加清晰度。实验结果表明,我们提出的方法能够以每秒约100帧的速度增强2048×2048的全息图。据我们所知,这是首次在数字全息术的背景下考虑实时图像增强。