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Study on the Image Processing and Recognition Algorithm for Portable Precision Visual Measurement

机译:便携式精密视觉测量的图像处理与识别算法研究

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摘要

In portable precision visual measurement, processing result of the measurement image has an important influence on final measurement accuracy in large field working space. However, the images taken in large field working space always have the following characteristics: containing a large amount of information, having a high redundancy and including a lot of background noises. In order to solve these problems, precision image processing and recognition algorithm is researched. Firstly, portable precision visual measurement method is introduced. Then, the design method of global control points including non-coding points and coding points is displayed. Finally, the image processing and recognition algorithm is investigated in detail, including the largest variance threshold method used to partly binary the image, the detection algorithm of global control points based on the constraint of distance and acreage and coding value recognition method through correcting the image feature. A large amount of experiments show that the image processing and recognition algorithm is accurate and effective to processing the image taken in the working space.
机译:在便携式精密视觉测量中,在较大的现场工作空间中,测量图像的处理结果对最终测量精度有重要影响。然而,在大的野外工作空间中拍摄的图像始终具有以下特征:包含大量信息,具有高冗余度并包含许多背景噪声。为了解决这些问题,研究了精确的图像处理和识别算法。首先,介绍了便携式精密视觉测量方法。然后,显示了包括非编码点和编码点的全局控制点的设计方法。最后,对图像处理和识别算法进行了详细研究,包括用于部分二值化的最大方差阈值方法,基于距离和面积约束的全局控制点检测算法以及通过对图像进行校正的编码值识别方法。特征。大量实验表明,图像处理和识别算法对于处理在工作空间中拍摄的图像是准确有效的。

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