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基于SPCE61A的墙体空鼓声无损检测系统
引用本文:孙牵宇,童峰,曹绍杰.基于SPCE61A的墙体空鼓声无损检测系统[J].声学技术,2007,26(6):1150-1154.
作者姓名:孙牵宇  童峰  曹绍杰
作者单位:1. 厦门大学水声通信与海洋信息技术教育部重点实验室,厦门,361005
2. 香港城市大学制造工程与管理工程系服务机器人实验室,香港
基金项目:福建省科技计划;香港政府RGC项目
摘    要:针对建筑外墙空鼓的检测要求,利用振动与声学理论进行敲击过程的建模和敲击声学特性分析,在此基础上设计了一个基于16位凌阳单片机SPCE61A的嵌入式墙体无损检测系统。由于SPCE61A片内资源有限,通过片内资源的高效调配设计及算法优化实现多点数快速傅立叶计算,提高系统检测性能。实验数据表现的敲击声中低频段能量比与墙体结构的关系与理论分析基本吻合。门限检测方法对墙体进行识别,取100个好墙体的敲击声在9kHz处平均能量的0.6倍作为门限进行检测。实测200次敲击,正确识别率高达99%。如果环境噪声较大,而仍利用门限检测方法,则正确率识别率下降较大。实验结果表明了该系统的有效性。

关 键 词:墙体空鼓  无损检测  凌阳单片机  敲击声检测法
文章编号:1000-3630(2007)-06-1150-05
收稿时间:2006-07-23
修稿时间:2006-11-10

Acoustic inspection of wall hollowing based on SPCE61A single-chip microcomputer
SUN Qian-yu,TONG Feng and S. K. TSO.Acoustic inspection of wall hollowing based on SPCE61A single-chip microcomputer[J].Technical Acoustics,2007,26(6):1150-1154.
Authors:SUN Qian-yu  TONG Feng and S K TSO
Affiliation:Key Laboratory of Underwater Acoustic Communication and Marine Information Technology of the MOE, Xiamen University, Xiamen 361005;Key Laboratory of Underwater Acoustic Communication and Marine Information Technology of the MOE, Xiamen University, Xiamen 361005;Service robotics laboratory, Department of MEEM, City University of Hong Kong, Hong Kong, China
Abstract:To tackle the safety threats caused by the wall hollowing,this paper designs an acoustic no-ndestructive inspection system based on embedded Sunplus SPCE61A single-chip microcomputer. The imp-act process and the resulting sound emission are analyzed theoretically to obtain the relationship between the hollow wall and the corresponding acoustic feature. Due to the limited on-chip memory capacity of the SPCE61A,the present system adopts the memory distribution and Fast Fourier Transform (FFT) algorithm optimization to realize 256-point FFT computation to ensure the detection performance. Experimental res-ults demonstrate the effectiveness of the present system,which has the potential of being developed as a portable,convenient,accurate and low-cost inspection tool.
Keywords:wall hollowing  nondestructive inspection  Sunplus single-chip microcomputer  impact acoustics
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