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Towards an Automated Plant Height Measurement and Tiller Segmentation of Rice Crops using Image Processing

机译:朝着使用图像处理的自动化植物高度测量和稻米作物分蘖分割

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Plant phenotyping is the process of completely assessing the basic and complex characteristics of the plant, which includes height and tiller count. The International Rice Research Institute (IRRI) researchers does plant phenotyping to observe changes in the physical characteristics of the C4 rice crops after modifying its genetic makeup to increase yields without using too much water, land and fertilizer resources. As this advances, the traditional way of observing phenotypic data is still trailing behind. Automated plant phenotyping offers an effective substitute because it allows a regulated image analysis that can be reproduced due to the automation. This is to address the lack in accuracy, reproducibility and traceability in manual phenotyping. With this, an image processing system that automates the measuring of height and the counting of tillers of a rice crop, specifically the C4 rice, was developed. The system applies HSV and Thresholding for preprocessing, Canny Edge Detection (tiller) and Zhang-Suen Thinning Algorithm (height) for the plant structure and tracing and conversion for measuring the height. Tiller counting is done by counting the cluster of pixels in a given region of interest. Four experiments were conducted using different setups and different combinations of algorithms. The fourth experiment was able to get an average percentage error of 76.14% for the tiller count and 238.11% for the height measurement. Presence of shadows and hanging leaves heavily affected the results of this experiment.
机译:植物表型是完全评估植物的基本和复杂特性的过程,包括高度和分蘖数。国际大米研究所(IRRI)研究人员确实植物表型在改变其遗传构成后观察C4稻作物物理特征的变化,以增加产量,而不使用过多的水,土地和肥料资源。由于这一进步,观察表型数据的传统方式仍然落后。自动化植物表型型提供有效的替代品,因为它允许由于自动化而可以再现的受调节的图像分析。这是为了解决手工表型中的准确性,可重复性和可追溯性缺乏。由此,开发了一种图像处理系统,其自动测量高度和稻米作物的分蘖计数,特别是C4米。该系统适用HSV和阈值处理,用于预处理,罐头边缘检测(耕作)和张素稀疏算法(高度),用于植物结构和测量高度的跟踪和转换。通过计算给定的感兴趣区域中的像素群集来完成分蘖计数。使用不同的设置和不同算法组合进行四个实验。第四个实验能够为分蘖计数的平均百分比误差为76.14%,高度测量的238.11%。阴影和悬挂叶的存在严重影响了该实验的结果。

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