DocumentCode
237597
Title
Real time acquisition and frequency domain analysis of acoustic patterns of fluids for applications in the field of homeland security
Author
Singh, Sushil ; Bansal, Dipali
Author_Institution
Deptt. Of EEE, Manav Rachna Int. Univ., Faridabad, India
fYear
2014
fDate
28-29 Nov. 2014
Firstpage
108
Lastpage
112
Abstract
This paper investigates acoustic patterns generated by different liquids in real time based on spectral analysis technique which finds a lot of relevance in various fields related to defense and homeland security. Some of the drawbacks with existing techniques include limitations with acquisition of well defined patterns for various liquids. To overcome these limitations, this paper describes a technique which involves generation of a single frequency tone in MATLAB with the help of a program and passing that signal through the liquid and then further capturing and analyzing the received signal using a virtual spectrum analyzer. Piezoelectric sensors are used for transmission and receiving the tone through the fluid. The arrangement discussed successfully captures acoustic patterns in non destructive way for five different liquids/solutions by exciting them with various single frequency tones. Thus a low cost system that exhibits consistency in results and can quickly acquire specific acoustic patterns for various fluids is developed that also facilitates easy-to-interpret measurement results.
Keywords
acoustic signal processing; frequency-domain analysis; national security; piezoelectric transducers; MATLAB; acoustic patterns; frequency domain analysis; homeland security; piezoelectric sensors; real time acquisition; spectral analysis technique; virtual spectrum analyzer; Acoustics; Computers; Containers; Liquids; MATLAB; Sensors; Acoustic signal; database; frequency domain analysis;
fLanguage
English
Publisher
ieee
Conference_Titel
Computational Intelligence on Power, Energy and Controls with their impact on Humanity (CIPECH), 2014 Innovative Applications of
Conference_Location
Ghaziabad
Type
conf
DOI
10.1109/CIPECH.2014.7019095
Filename
7019095
Link To Document