DocumentCode
1464328
Title
Correlative signal processing in wireless SAW sensor applications to provide multiple-access capability
Author
Ostermayer, Gerald
Author_Institution
PSE MCS RA 2, Siemens AG, Wien, Austria
Volume
49
Issue
4
fYear
2001
fDate
4/1/2001 12:00:00 AM
Firstpage
809
Lastpage
816
Abstract
We present a new method of evaluating the information of interest in the output response of surface acoustic wave (SAW) sensors. A well-known spread-spectrum technique is used to get the sensor information from an individually addressed SAW sensor. On-off keying-coded SAW sensors are picked out of a number of sensors by correlating the sensor response signal with a replica of the known response signal of a particular sensor. The influence of a measurement quantity (e.g., temperature, pressure, current, voltage,...) on a SAW sensor can be observed as a scaling of time and shape of the sensor response signal. This scaling factor is evaluated by use of correlative signal processing techniques. A main advantage of this method is the capability of multiple access, i.e., to distinguish different sensors in the range of a single interrogation system. Since this technique makes it possible to deal with sensor response signals overlapping in the time domain, sensors can remain short and, therefore, cheap. The principle of operation, limits of the method, and experimental results for temperature measurements are also presented
Keywords
amplitude shift keying; correlation methods; multi-access systems; radiotelemetry; remote sensing; signal processing; surface acoustic wave sensors; correlative signal processing; individually addressed SAW sensor; multiple-access capability; on-off keying-coded SAW sensors; scaling factor; sensor response signal; spread-spectrum technique; surface acoustic wave sensors; temperature measurements; wireless SAW sensor applications; Acoustic sensors; Acoustic signal processing; Acoustic waves; Response surface methodology; Shape measurement; Signal processing; Surface acoustic waves; Temperature measurement; Temperature sensors; Wireless sensor networks;
fLanguage
English
Journal_Title
Microwave Theory and Techniques, IEEE Transactions on
Publisher
ieee
ISSN
0018-9480
Type
jour
DOI
10.1109/22.915468
Filename
915468
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