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NON-DESTRUCTIVE GROWTH MEASUREMENT OF SELECTED VEGETABLE SEEDLINGS USING ORTHOGONAL IMAGES

机译:利用正交图像对蔬菜苗进行非破坏性生长测量

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A non-destructive measurement method of plant features using image processing technique provides a means to analyze the continuous growth process of a plant. In a previous study, we developed a non-destructive measurement method by using elliptical Hough transform to search for seedling leaves from a top-view image. To improve the accuracy of the leaf number estimation and leaf area measurement, this study further incorporates two side-view images with a top-view image to extract and reconstruct the three-dimensional structure of selected vegetable seedlings, and thus to measure the features related to plant growth. By registering correspondences between the three orthogonal images, the position, orientation, and dimensions of leaves in a seedling can be more exactly derived than from a single top-view image alone. The leaf skeletons traced in the side-view images can be used to correct the projected leaf area in the top-view image for better estimation of leaf area. Experiments were performed to test the performance of the measurement system by comparing the non-destructively estimated leaf area and the actual leaf area of selected vegetable seedlings. The average relative errors of total leaf estimation for cabbage and broccoli seedlings were 14.5% and 13.1%, respectively, using a single top-view image. By incorporating orthogonal images, the relative errors were significantly reduced to 1.6% and 4.9%, respectively. Using this non-destructive measurement system, the continuous growth of vegetable seedlings can be effectively measured
机译:利用图像处理技术对植物特征进行非破坏性测量的方法提供了一种分析植物连续生长过程的手段。在先前的研究中,我们开发了一种无损测量方法,即使用椭圆形Hough变换从顶视图图像中搜索幼苗叶片。为了提高叶数估计和叶面积测量的准确性,本研究进一步将两个侧视图图像与一个顶视图图像相结合,以提取和重建所选蔬菜幼苗的三维结构,从而测量相关的特征种植增长。通过记录三个正交图像之间的对应关系,可以比仅从单个顶视图图像更精确地得出幼苗中叶子的位置,方向和尺寸。侧视图图像中描绘的叶骨架可用于校正顶视图图像中的投影叶面积,以便更好地估计叶面积。通过比较所选蔬菜幼苗的非破坏性估计叶面积和实际叶面积,进行了实验以测试测量系统的性能。使用单个顶视图图像,卷心菜和西兰花幼苗的总叶片估计的平均相对误差分别为14.5%和13.1%。通过合并正交图像,相对误差分别显着降低至1.6%和4.9%。使用这种无损测量系统,可以有效地测量蔬菜幼苗的连续生长

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