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An Accurate Image Measurement Method Based on a Laser-Based Virtual Scale

机译:基于激光虚拟标尺的精确图像测量方法

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摘要

Image measurement methods have been widely used in broad areas due to their accuracy and efficiency. However, current techniques usually involve complex calibration, an elaborate optical design, or sensitivity to the test environment. In this paper, a simple optical device was designed to emit parallel beams to obtain a virtual scale for measurement purposes. The proposed theory ensures the robustness of the system when obtaining each scale in the presence of uncertainty. The scale creates a mapping from image coordinates to world coordinates. By using the moving least squares (MLS) method, a full-field scale map can be reconstructed to achieve high-precision measurement at the sub-pixel level. Experimental verifications are carried out, showing that the proposed method provides very accurate and reliable results. The proposed approach is simple in terms of equipment, and the scale can be automatically calculated. Therefore, the system proposed in this paper is a promising candidate as a tool for non-contacting measurements (e.g., the crack development, geometric size) in the inaccessible structures such as high-rise buildings and long-span bridges.
机译:图像测量方法由于其准确性和效率而被广泛用于广泛领域。但是,当前的技术通常涉及复杂的校准,复杂的光学设计或对测试环境的敏感性。在本文中,一个简单的光学设备被设计为发出平行光束以获得用于测量目的的虚拟标尺。所提出的理论确保了在存在不确定性的情况下获得每个标度时系统的鲁棒性。比例尺创建从图像坐标到世界坐标的映射。通过使用移动最小二乘(MLS)方法,可以重建全场比例图,以在子像素级别实现高精度测量。进行了实验验证,表明所提出的方法提供了非常准确和可靠的结果。所提出的方法在设备方面很简单,并且可以自动计算规模。因此,本文提出的系统是一种在非接触式结构(例如高层建筑和大跨度桥梁)中进行非接触式测量(例如裂缝发展,几何尺寸)的工具的有前途的候选者。

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