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Cancelling bias induced by correlation coefficient interpolation for sub-pixel image registration

机译:由相关系数插值引起的抵消偏差用于子像素图像配准

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摘要

Accurate sub-pixel image registration has many applications in precision engineering and manufacturing. Due to its computational efficiency, correlation-based sub-pixel image registration is especially useful for real-time applications. This paper presents a theoretical analysis of the bias induced by correlation coefficient interpolation, when employed to achieve two-dimensional sub-pixel registration resolution. An analytical model of bias in terms of true sub-pixel image shift is first derived according to the given reference image model. It is then used to establish an accurate bias map expressed explicitly in terms of sub-pixel image shift estimated from coefficient interpolation. This bias map is readily employed to eliminate the bias error and to significantly improve measurement accuracy for real-time applications. A bias cancellation scheme was implemented and verified by means of both computer simulation and experimental results. Specifically, sub-nanometre measurement precision was experimentally demonstrated using a microscopic vision system implemented for real-time motion tracking.
机译:精确的亚像素图像配准在精密工程和制造中有许多应用。由于其计算效率高,基于相关性的子像素图像配准对于实时应用特别有用。本文介绍了当用于实现二维子像素配准分辨率时,相关系数插值引起的偏差的理论分析。首先根据给定的参考图像模型推导关于真实子像素图像偏移的偏差分析模型。然后将其用于建立根据系数插值估算的子像素图像偏移明确表示的精确偏差图。该偏置图可轻松用于消除偏置误差并显着提高实时应用的测量精度。通过计算机仿真和实验结果,实现并消除了偏差消除方案。具体而言,使用用于实时运动跟踪的显微视觉系统,通过实验证明了亚纳米级的测量精度。

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