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首页> 外文期刊>Transactions of the ASAE >APPLE WATERCORE SORTING SYSTEM USING X-RAY IMAGERY: I. ALGORITHM DEVELOPMENT
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APPLE WATERCORE SORTING SYSTEM USING X-RAY IMAGERY: I. ALGORITHM DEVELOPMENT

机译:使用X射线图像的苹果水分选系统:I.算法开发

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摘要

Watercore is an internal disorder that leads to breakdown of tissue and possibly loss or downgrade of the product. It is very difficult to determine whether an apple contains watercore or not, especially in the early stages, based solely on external information, since watercore does not alter external texture until after severe internal breakdown. In this study, we explored the possibility of using two-dimensional (2-D) X-ray imaging to detect internal watercore damage in apples. The algorithm to detect Red ‘Delicious’ watercore apples consists of two stages, the first stage extracts features from the apple x-ray image and the second stage categorizes apples into different watercore levels using the features identified. A total of eight features were extracted from an x-ray scanned apple image and these features were fed into neural network classifier to categorize them into three different classes, clean, mild, and severe. The results showed that the system was able to correctly recognize apples into clean and severe categories within 5-8% false positive and negative ratios. The result also showed that the algorithm was able to recognize apples independent of apple orientation, but only if the stem-calyx axis made a fixed angle with the x-ray beam. Sorting at random apple orientation was not tested. The estimated speed of the system, if implemented on a DSP board, will be fast enough to keep up with the current apple processing line.
机译:水芯是一种内部疾病,可导致组织破裂,并可能导致产品损失或降级。仅基于外部信息很难确定苹果是否包含水核,特别是在早期阶段,因为水核直到发生严重的内部分解后才会改变外部质地。在这项研究中,我们探索了使用二维(2-D)X射线成像来检测苹果内部水核损害的可能性。检测红色“美味”水核心苹果的算法包括两个阶段,第一阶段从苹果X射线图像中提取特征,第二阶段使用识别出的特征将苹果分类为不同的水核心级别。从经过X射线扫描的苹果图像中提取了总共八个特征,并将这些特征输入到神经网络分类器中,将它们分为三个不同的类别:清洁,轻度和严重。结果表明,该系统能够正确识别出处于5-8%的假阳性和阴性比率的干净和严重类别的苹果。结果还表明,该算法能够识别与苹果方向无关的苹果,但前提是茎萼轴与X射线束成固定角度。未测试以随机的苹果方向进行排序。如果在DSP板上实现,则系统的估计速度将足够快以跟上当前的Apple生产线。

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