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Smartphone Application for Assessing Peanut Maturity

机译:智能手机应用程序评估花生成熟

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摘要

Harvesting at the right time is crucial to ensuring the best quality peanuts and maximizing yield. This article presents an offline system to assist farmers in evaluating peanut maturity. The system uses an automated method to determine peanut pod maturity, and it is portable, so it can be used in the field. Peanut maturity evaluation in the proposed system is based on the color of the mesocarp, which is the middle layer of the peanut shell. The mesocarp changes color over time from white to yellow,then dark brown, and finally black as the peanut reaches maturity. In the developed system, peanut pods are placed on a specially designed peanut sorting board, and the mesocarp color of each peanut pod is quantified by measuring the red, green, and blue(RGB) values with a smartphone camera. A nearest-neighbor classification algorithm is then used to sort each peanut into one of 25 colors on a color bar, which represents the different peanut maturity levels. To estimate the overall crop maturity, the ratio of the number of peanuts in the combined brown-black class to the total sample size must be determined. Using the developed system, this ratio was identified with 88.99% accuracy. In addition, the experimental results show that the inter-rater reliability of the developed system is comparable with manual methods involving human graders. Therefore, the system presented in this article shows great promise as a tool for helping to evaluate the maturity of peanut crops.
机译:在合适的时间收获对于确保最佳品质的花生和最大化的产量至关重要。本文介绍了一个脱机系统,以帮助农民评估花生成熟度。该系统使用自动方法来确定花生POD成熟度,并且它是便携式的,因此可以在该字段中使用。所提出的系统中的花生成熟度评估基于中间型奶粉的颜色,这是花生壳的中间层。 Mesocarp从白色到黄色的时间随着时间的推移而变化,然后是深褐色,最后是黑色,因为花生达到成熟。在发达的系统中,将花生荚放在特殊设计的花生分选板上,通过使用智能手机相机测量红色,绿色和蓝色(RGB)值来量化每个花生荚的Mesocarp颜色。然后使用最近的邻居分类算法将每个花生分类为25种颜色的颜色栏中,这代表不同的花生成熟度水平。为了估计整体作物成熟度,必须确定组合的棕黑色类别中的花生数量与总样本大小的比例。使用开发系统,该比率以88.99%的精度识别。此外,实验结果表明,发达系统的帧间间可靠性与涉及人类分级机的手工方法相当。因此,本文中提供的系统显示出作为帮助评估花生作物成熟度的工具的巨大希望。

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