首页> 外文期刊>Transactions of the ASABE >AUTOMATED DETECTION OF MECHANICALLY INDUCED BRUISE AREAS IN GOLDEN DELICIOUS APPLES USING FLUORESCENCE IMAGERY
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AUTOMATED DETECTION OF MECHANICALLY INDUCED BRUISE AREAS IN GOLDEN DELICIOUS APPLES USING FLUORESCENCE IMAGERY

机译:荧光成像技术自动检测金黄色苹果中机械诱发的挫伤区域

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摘要

This study pursues the detection of bruised areas caused by mechanical impact on Golden Delicious apples using chlorophyll fluorescence imagery. When a fruit is impacted by a mechanical force and a bruise occurs, the chlorophyll nuclei inside the peel are damaged, which causes a reduction in fluorescence excitation compared to non-impacted areas. This difference allows automated detection of bruises and removal of damaged fruits to maintain optimal quality. In this study, fruit bruises were created using impact forces of 68.6, 88.2, and 107.8 N, and the resulting damage to chlorophyll nuclei inside the fruit peel was observed. Expansion of the area of damaged chlorophyll nuclei over time was observed using fluorescence imagery 0.5, 1, 2, and 4 h after the mechanical impact. This study employed a continuous capture of fruit fluorescence images and used MATLAB software for image processing and analysis. Edge contour noise was filtered by presetting a proper threshold, and the contour features of fruit bruises were distinguished using local adaptive binarization and a size filter. The experimental results showed that the mean recognition rate of a bruise 0.5 h after impact forces of 68.6, 88.2, and 107.8 N was as high as 86.7%, and the bruise recognition rate 1 h after impact was 100%. In conclusion, the fluoroscopic examination system for bruises was capable of detecting bruises accurately before the bruises were visible to the naked eye.
机译:这项研究旨在使用叶绿素荧光成像技术来检测由机械冲击对金冠苹果造成的瘀伤区域。当水果受到机械力的撞击而发生挫伤时,果皮内部的叶绿素核会受到破坏,与未受影响的区域相比,这会导致荧光激发的降低。这种差异允许自动检测瘀伤并清除受损的水果,以保持最佳质量。在这项研究中,使用68.6、88.2和107.8 N的冲击力产生了水果瘀伤,并观察到了对果皮内部叶绿素核的破坏。机械撞击后0.5、1、2和4小时使用荧光成像观察到受损叶绿素核的面积随时间的扩大。这项研究采用了水果荧光图像的连续捕获,并使用MATLAB软件进行图像处理和分析。通过预设适当的阈值来过滤边缘轮廓噪声,并使用局部自适应二值化和大小过滤器来区分水果瘀伤的轮廓特征。实验结果表明,撞击力0.5 h后的挫伤识别率分别为68.6、88.2和107.8 N,平均识别率高达86.7%,撞击1 h后的挫伤识别率为100%。综上所述,用于瘀伤的荧光检查系统能够在肉眼看不见瘀伤之前准确地检测出瘀伤。

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