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基于递归奇异熵方法的波纹管压浆超声检测
引用本文:陈媛,韩庆邦,姜学平,贾静,范洪辉,殷澄,朱昌平.基于递归奇异熵方法的波纹管压浆超声检测[J].声学技术,2016,35(1):44-48.
作者姓名:陈媛  韩庆邦  姜学平  贾静  范洪辉  殷澄  朱昌平
作者单位:河海大学物联网学院, 江苏常州 213022;河海大学物联网学院, 江苏常州 213022;河海大学物联网学院, 江苏常州 213022;河海大学物联网学院, 江苏常州 213022;江苏理工学院计算机工程学院, 江苏常州 213001;河海大学物联网学院, 江苏常州 213022;河海大学物联网学院, 江苏常州 213022
基金项目:国家自然科学基金(11274091、11274092、61302124);河海大学中央高校基金项目(2011B11014)
摘    要:为检测混凝土结构中波纹管内灌浆密实度,提出了一种基于递归奇异熵方法的波纹管压浆质量检测的方法。利用有限元软件进行理论模拟仿真,对结构响应信号采用多变量融合的方法,结合递归图分析法和奇异熵估计分析回波数据,结果表明,缺陷横向尺寸与递归奇异熵值具有单调对应关系,递归奇异熵方法可以用来判断压浆剥离尺寸。通过实际制作模型并测量,验证了该方法的可行性。

关 键 词:递归图  奇异熵  无损检测  有限元仿真
收稿时间:2015/3/28 0:00:00
修稿时间:2015/6/19 0:00:00

Nondestructive test method based on singular entropy of recurrence matrix
CHEN Yuan,HAN Qing-bang,JIANG Xue-ping,JIA Jing,FAN Hong-hui,YIN Cheng and ZHU Chang-ping.Nondestructive test method based on singular entropy of recurrence matrix[J].Technical Acoustics,2016,35(1):44-48.
Authors:CHEN Yuan  HAN Qing-bang  JIANG Xue-ping  JIA Jing  FAN Hong-hui  YIN Cheng and ZHU Chang-ping
Affiliation:College of Internet of Things Engineering, Changzhou 213022, Jiangsu, China;College of Internet of Things Engineering, Changzhou 213022, Jiangsu, China;College of Internet of Things Engineering, Changzhou 213022, Jiangsu, China;College of Internet of Things Engineering, Changzhou 213022, Jiangsu, China;School of Computer Engineering, Jiangsu University of Technology, Changzhou 213001, Jiangsu, China;College of Internet of Things Engineering, Changzhou 213022, Jiangsu, China;College of Internet of Things Engineering, Changzhou 213022, Jiangsu, China
Abstract:A nondestructive test method based on singular entropy of recurrence matrix is proposed to test defects in corrugated pipe of concrete structure. A model containing 4 different defects is constructed and simulated by using finite element method. Signals are recorded at different locations in the structure. The collected signals are then processed by multivariate recurrence matrix method with singular entropy estimation. It is found that the corresponding relation between the defect size and the entropy value is monotonous, and so this method can be used to distinguish the defect size. Several actual models are constructed and measured, and the results verify the feasibility of the proposed method.
Keywords:recurrence plot  singular entropy  nondestructive test  finite element
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