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Improved Multiple Matching Method for Observing Glacier Motion With Repeat Image Feature Tracking

机译:具有重复图像特征跟踪的冰川运动观测的改进多重匹配方法

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Repeat image feature tracking is commonly used to measure glacier surface motion from pairs of images, most often utilizing normalized cross correlation (NCC). The multiple-image multiple-chip (MIMC) algorithm successfully employed redundant matching (i.e., repeating the matching process over each area using varying combinations of settings) to increase the matching success rate. Due to the large number of repeat calculations, however, the original MIMC algorithm was slow and still prone to failure in areas of high shearing flow. Here, we present several major updates to the MIMC algorithm that increase both the speed and the matching success rate. First, we include additional redundant measurements by swapping the image order and matching direction; a process we term quadramatching. Second, we utilize a priori ice velocity information to confine the NCC search space through a system we term dynamic linear constraint, which substantially reduces the computation time and increases the rate of successful matches. Additionally, we develop a novel postprocessing algorithm, pseudosmoothing, to determine the most probable displacement. Our tests reveal the complementary and multiplicative nature of these upgrades in their improvement in the overall MIMC performance.
机译:重复图像特征跟踪通常用于测量成对图像中的冰川表面运动,大多数情况下是利用归一化互相关(NCC)。多图像多芯片(MIMC)算法成功采用了冗余匹配(即使用变化的设置组合在每个区域上重复匹配过程)以提高匹配成功率。但是,由于大量重复计算,原始的MIMC算法运行缓慢,并且在高剪切流区域仍然容易出现故障。在这里,我们介绍了MIMC算法的几个主要更新,这些更新同时提高了速度和匹配成功率。首先,我们通过交换图像顺序和匹配方向来包括其他冗余测量;我们称之为四匹配的过程。第二,我们利用先验的冰速信息通过动态线性约束系统来限制NCC搜索空间,从而大大减少了计算时间并提高了成功匹配的速度。此外,我们开发了一种新颖的后处理算法,伪平滑,以确定最可能的位移。我们的测试揭示了这些升级在提高MIMC整体性能方面的互补性和乘法性。

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