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Feature extraction of wood-hole defects using empirical mode decomposition of ultrasonic signals

机译:超声波信号经验模隔离的木孔缺陷特征提取

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摘要

Holes and knots are common defects that occur in wood that affect its value for both structural and high-end aesthetic applications. When these defects are internal to wood they are rarely evident from visual inspection. It is therefore important to develop techniques to detect and analyse these defects both in standing trees prior to harvesting them and in processed timber and/or completed wooden structures. This paper presents an effective method to detect and analyse hole defects in wood. The method uses the recorded output wave signal from an ultrasonic device tested on rectangular wood samples. The ultrasonic wave signal is decomposed into its constructive modes using Empirical Mode Decomposition (EMD). This process decomposes a non-stationary nonlinear wave signal into its semi-orthogonal bases known as intrinsic mode functions (IMFs). A matrix of all IMFs (except the residual IMF) is then assembled and its covariance matrix derived. The research demonstrates through several experimental studies that the maximum eigenvalue of the proposed covariance matrix is more sensitive to hole defects in wood than traditionally used measures such as time-of-flight. The results provide evidence that the proposed damage sensitive feature (DSF) can successfully detect hole defects in hardwood samples but further work is recommended on its application to other materials. It is anticipated that this method will have wide applicability in the forestry and timber industries for aiding in product value determination.
机译:孔和结是在木材中发生的常见缺陷,其影响其对结构和高端美学应用的价值。当这些缺陷是木头内部时,他们很少从目视检查中明显明显。因此,在收获它们之前和加工的木材和/或完成木结构之前,可以开发在常设树上检测和分析这些缺陷的技术是重要的。本文介绍了一种检测和分析木材缺陷的有效方法。该方法使用来自在矩形木样品上测试的超声波装置的记录输出波信号。超声波信号使用经验模式分解(EMD)将超声波信号分解为其建设性模式。该过程将非静止非线性波信号分解为称为内在模式功能(IMF)的半正交基座。然后组装所有IMFS(除了残余IMF)的矩阵及其协方差矩阵。该研究通过若干实验研究表明,所提出的协方差基质的最大特征值对木材的孔缺陷比传统上使用的措施(如飞行时间)更敏感。结果提供了证据表明,建议的损伤敏感特征(DSF)可以成功地检测硬木样品中的孔缺损,但建议进一步的工作在其应用于其他材料上。预计该方法将在林业和木材行业方面具有广泛的适用性,以实现产品价值测定。

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