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首页> 外文期刊>Acta Horticulturae >Basic study on non-destructive growth measurement of strawberry plants using a machine-vision system.
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Basic study on non-destructive growth measurement of strawberry plants using a machine-vision system.

机译:使用机器视觉系统对草莓植物进行非破坏性生长测量的基础研究。

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The movable bench system is one method of increasing area productivity and minimizing the input energy needed for heating and lighting in a greenhouse. In the movable bench cultivation system, all plants pass through a single location, termed the access point, for watering every day. The access point should thus be the ideal place to measure precise growth information. Machine vision is a promising technique for efficiently monitoring all plants at the access point, since it is non-destructive. This study examines some basic techniques for developing a non-destructive growth measurement system for strawberry plants cultivated on the movable bench system using machine vision. First, an experimental system was developed for 3D measurement of strawberry plants cultivated on a 1-m long bench. It consisted of a depth sensor, a source of illumination and a wheeled platform that ran on rails and carried the bench. To obtain 3D growth information, the experimental system tiled line image output from the depth sensor while the bench passed below. A noise reduction method for the tiled images was also developed. Ten benches were tested and their 3D information was reconstructed; the width and height profiles were then calculated. 3D data were evaluated for accuracy of maximum height and width measurements. The average estimation error was 3.7 cm for width and 1.6 cm for height. Second, the characteristics of spectral reflectance of strawberry leaves were investigated, and an algorithm was developed for new leaf detection using an ordinary color camera and green illumination. After four potted plants were monitored for a month, new leaf detection accuracy proved to be 74.2%.CT International Symposium on New Technologies for Environment Control, Energy-Saving and Crop Production in Greenhouse and Plant Factory - Greensys 2013, Jeju, Korea Republic, 22-27 September 2013.
机译:移动式工作台系统是一种提高区域生产力并最小化温室中加热和照明所需的输入能量的方法。在可移动的长凳栽培系统中,所有植物每天都要经过一个称为接入点的位置。因此,接入点应该是测量精确的增长信息的理想场所。机器视觉是非破坏性的,因此是一种有效监控接入点所有植物的有前途的技术。这项研究探讨了一些基本技术,这些技术可为使用机器视觉在可移动工作台系统上种植的草莓植物开发无损生长测量系统。首先,开发了一个实验系统,用于3D测量在1米长的长凳上种植的草莓植株。它由一个深度传感器,一个照明源和一个带轮子的平台组成,平台在轨道上运行并承载工作台。为了获得3D增长信息,当工作台经过下方时,实验系统会平铺从深度传感器输出的线图像。还开发了平铺图像的降噪方法。测试了十个工作台,并重建了其3D信息。然后计算宽度和高度轮廓。评估3D数据的最大高度和宽度测量的准确性。宽度的平均估计误差为3.7 cm,高度的平均估计误差为1.6 cm。其次,研究了草莓叶片的光谱反射特性,并开发了一种使用普通彩色相机和绿色照明检测新叶片的算法。对四个盆栽植物进行了一个月的监测后,新叶片的检测精度被证明为74.2%。CT国际温室和植物工厂环境控制,节能和作物生产新技术研讨会-Greensys 2013,韩国济州, 2013年9月22日至27日。

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