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首页> 外文期刊>Computer Graphics Forum: Journal of the European Association for Computer Graphics >Freehand HDR Imaging of Moving Scenes with Simultaneous Resolution Enhancement
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Freehand HDR Imaging of Moving Scenes with Simultaneous Resolution Enhancement

机译:具有增强分辨率的动态场景的徒手HDR成像

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摘要

Despite their high popularity, common high dynamic range (HDR) methods are still limited in their practical applicability: They assume that the input images are perfectly aligned, which is often violated in practise. Our paper does not only free the user from this unrealistic limitation, but even turns the missing alignment into an advantage: By exploiting the multiple exposures, we can create a super-resolution image. The alignment step is performed by a modern energy-based optic flow approach that takes into account the varying exposure conditions. Moreover, it produces dense displacement fields with subpixel precision. As a consequence, our approach can handle arbitrary complex motion patterns, caused by severe camera shake and moving objects. Additionally, it benefits from several advantages over existing strategies: (i) It is robust under outliers (noise, occlusions, saturation problems) and allows for sharp discontinuities in the displacement field. (ii) The alignment step neither requires camera calibration nor knowledge of the exposure times. (iii) It can be efficiently implemented on CPU and GPU architectures. After the alignment is performed, we use the obtained subpixel accurate displacement fields as input for an energy-based, joint super-resolution and HDR (SR-HDR) approach. It introduces robust data terms and anisotropic smoothness terms in the SR-HDR literature. Our experiments with challenging real world data demonstrate that these novelties are pivotal for the favourable performance of our approach.
机译:尽管高动态范围(HDR)受到广泛欢迎,但它们的实际适用性仍然受到限制:他们假设输入图像是完美对齐的,这在实践中经常被违反。我们的论文不仅使用户摆脱了这种不切实际的局限,而且甚至将丢失的对齐方式变成了一个优势:通过利用多重曝光,我们可以创建超分辨率图像。通过现代的基于能量的光流方法执行对准步骤,该方法考虑了变化的曝光条件。而且,它产生具有亚像素精度的密集位移场。因此,我们的方法可以处理由剧烈的相机抖动和移动的物体引起的任意复杂的运动模式。此外,与现有策略相比,它还具有以下优点:(i)在异常值(噪声,遮挡,饱和度问题)下具有较强的鲁棒性,并且允许位移场中出现明显的不连续性。 (ii)对准步骤既不需要照相机校准也不需要曝光时间的知识。 (iii)可以在CPU和GPU架构上有效实现。对齐后,我们将获得的子像素精确位移场用作基于能量的联合超分辨率和HDR(SR-HDR)方法的输入。它在SR-HDR文献中引入了稳健的数据项和各向异性平滑项。我们对具有挑战性的现实世界数据进行的实验表明,这些新颖性对于我们方法的良好性能至关重要。

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