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Discrimination Between Closed and Open Shell (Turkish) Pistachio Nuts Using Undecimated Wavelet Packet Transform

机译:使用未抽取的小波包变换区分封闭的和开放的外壳(土耳其式)开心果

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摘要

Due to low consumer acceptance and the possibility of immature kernels, closed-shell pistachio nuts should be separated from open-shell nuts before reaching the consumer. A system using impact acoustics as a means of classifying closed-shell nuts from open-shell nuts has already been shown to be feasible and have better discrimination performance than a mechanical system. The accuracy of an impact acoustics based system is determined by the signal processing and feature extraction procedures. In this article, a new time-frequency plain feature extraction and classification algorithm was developed to discriminate between open- and closed-shell pistachio nuts produced in the Gaziantep region of Turkey. The proposed approach relies on the analysis of the impact acoustics signal of pistachio nuts, which are emitted from their impact with a steel plate after dropping from a certain height. Features are extracted by decomposing the acoustic signals into time and frequency components, using double-tree undecimated wavelet packet transform. The most discriminative features from the dual tree nodes are selected by a wrapper strategy that includes the structural pruning of the double-tree feature dictionary. The proposed approach requires no prior knowledge of the relevant time or frequency content of the acoustic signals. The algorithm used a small number of features and achieved a classification accuracy of 91.7% on the validation data set, while separating the closed shells from the open ones. A previously implemented algorithm, which uses maximum signal amplitude, absolute integration, and gradient features, achieved 82% classification accuracy on the same dataset. The results show that the time-frequency features extracted from impact acoustics can be used successfully for classification of open- and closed-shell Turkish pistachios.
机译:由于消费者的接受度低,并且籽粒不成熟的可能性,因此,在到达消费者手中之前,应将开开心果与开壳坚果分开。已经证明,使用冲击声学作为将开壳螺母与开壳螺母分类的一种系统是可行的,并且比机械系统具有更好的识别性能。基于撞击声的系统的精度由信号处理和特征提取程序确定。在本文中,开发了一种新的时频平原特征提取和分类算法,以区分在土耳其加济安泰普地区生产的开壳和闭壳开心果。所提出的方法基于对开心果的撞击声信号的分析,该开心果从一定高度掉落后从钢板的撞击中发出。使用双树未抽取小波包变换,通过将声学信号分解为时间和频率分量来提取特征。来自双树节点的最具区别性的特征是通过包装策略选择的,该策略包括对双树特征字典的结构修剪。所提出的方法不需要关于声信号的相关时间或频率内容的先验知识。该算法使用少量特征,并在验证数据集上实现了91.7%的分类精度,同时将封闭壳与开放壳分离。先前实现的算法使用最大信号幅度,绝对积分和梯度特征,在同一数据集上实现了82%的分类精度。结果表明,从撞击声中提取的时频特征可以成功地用于土耳其开心果的开壳和闭壳分类。

著录项

  • 来源
    《Biological Engineering》 |2008年第2期|p.159-172|共4页
  • 作者单位

    The authors are Nuri F. Ince, Post-Doctoral Associate, Fikri Goksu, Doctoral Student, and Ahmed H. Tewfik, Professor, Department of Electrical and Computer Engineering, University of Minnesota, Minnesota;

    Ibrahim Onaran, Doctoral Student, and A. Enis Cetin, ASABE Member, Professor, Department of Electrical and Electronics Engineering, Bilkent University, Ankara, Turkey;

    and Tom C. Pearson, ASABE Member Engineer, Agricultural Engineer, USDA-ARS, Manhattan, Kansas. Corresponding author: Nuri F. Ince, Department of Electrical and Computer Engineering, 4-147C EE/CSCI Bldg., 200 Union St. SE, Minneapolis, MN 55455;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Classification, Impact acoustic, Turkish pistachios, Undecimated wavelet packet transform.;

    机译:分类;撞击声;土耳其开心果;未抽取小波包变换。;
  • 入库时间 2022-08-17 23:31:54

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