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Structural configuration study for an acoustic wave sensor - A new acoustic sensor approach based on the continuous structure is proposed, and good results are demonstrated

English · Paperback / Softback

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Description

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Acoustic sensors have been developed for many years. However, most acoustic sensors in application are chemical sensors which rely on the chemical material principle to predict mechanical vibration response signals subject to acoustics waves. In this book, we propose the new acoustic wave detection approach, considering that a continuous structure such as beam or plate with several response characteristics from an acoustic excitation can be a candidate for a sensor used to locate an acoustic source. Acoustic waves will be successfully reconstructed only if this inverse method provides bounds to the ill-conditioned results during the identification process. So the Tikhonov regularization technique is employed for the wave reconstruction work from responses. Effects of sensor design parameters, such as material properties,sensor structure dimensions and random noise background on the wave detection quality have been evaluated. Results show that such an approach is very good and reliable, it can be practical in acoustic sensing and will have wide applications in the field of acoustic wave sensing, especially, in the areas of security and disaster recovery by using qualified sensors.

About the author










Dr. Biaobiao Zhang studied and conducted research at the University of Alabama, USA, and got his Doctoral degree in 2012. His research interests include smart materials and sensor design, wireless acoustic sensor networks. He has published 30 referred papers. Currently Dr. Zhang is working for the Enjoyor Inc as a vice chief engineer in China.

Product details

Authors Stev Shepard, Steve Shepard, Hui Wang, Biaobia Zhang, Biaobiao Zhang
Publisher LAP Lambert Academic Publishing
 
Languages English
Product format Paperback / Softback
Released 01.01.2013
 
EAN 9783659348310
ISBN 978-3-659-34831-0
No. of pages 140
Subject Natural sciences, medicine, IT, technology > Physics, astronomy > Mechanics, acoustics

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