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Determination of maize hardness by biospeckle and fuzzy granularity

机译:利用生物斑点和模糊粒度确定玉米硬度

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摘要

In recent years there has been renewed interest in the development of novel grain classification methods that could complement traditional empirical tests. A speckle pattern occurs when a laser beam illuminates an optically rough surface that flickers when the object is active and is called biospeckle. In this work, we use laser biospeckle to classify maize (Zea mays L.) kernel hardness. A series of grains of three types of maize were cut and illuminated by a laser. A series of images were then registered, stored, and processed. These were compared with results obtained by floating test. The laser speckle technique was effective in discriminating the grains based on the presence of floury or vitreous endosperm and could be considered a feasible alternative to traditional floating methods. The results indicate that this methodology can distinguish floury and vitreous grains. Moreover, the assay showed higher discrimination capability than traditional tests. It could be potentially useful for maize classification and to increase the efficiency of processing dry milling corn.
机译:近年来,人们对新型谷物分类方法的发展产生了新的兴趣,该方法可以补充传统的经验检验。当激光束照射物体活动时会闪烁的光学粗糙表面时,就会出现斑点图案,这称为生物斑点。在这项工作中,我们使用激光生物散斑对玉米(Zea mays L.)籽粒硬度进行分类。切割了一系列三种玉米的谷物,并用激光照射。然后注册,存储和处理了一系列图像。将这些与通过浮动测试获得的结果进行比较。激光散斑技术可以有效地根据面粉中存在的粉状或玻璃状胚乳来鉴别谷物,可以认为是传统漂浮方法的可行替代方法。结果表明,该方法可以区分面粉状和玻璃状。而且,该分析显示出比传统测试更高的辨别能力。它可能对玉米分类和提高干玉米加工效率很有用。

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