Title :
Surface Acoustic Wave Pulsed-Correlator Transceiver for Aerospace Applications
Author :
Malocha, Donald C. ; Fisher, Brent ; Youngquist, Robert ; Weeks, Arthur ; Gallagher, Marcus
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of Central Florida, Orlando, FL, USA
Abstract :
This paper will present current efforts on wireless passive surface acoustic wave (SAW) sensor transceiver development for aerospace applications. Our group´s SAW sensor work has been sponsored by NASA for the past ten years in efforts to develop wireless sensing for ground base and space exploration in extreme environments. The devices are radiation hard and work from cryogenic to several hundred degrees centigrade with standard device processing. The focus of this paper will be on a synchronous, pulsed correlator transceiver for interrogation of SAW delay-line sensors. The 915-MHz system has a bandwidth of 15 MHz and uses a pulsed noise-generated signal of 1-(mu ) s duration. The design principles, system analysis, and receiver measurements are given. The prediction of signal-to-noise ratio versus range is shown for given system parameters. The system development leading to the first testing of SAW liquid level sensors at NASA KSC will be discussed.
Keywords :
aerospace instrumentation; cryogenics; surface acoustic wave correlation; transceivers; wireless sensor networks; NASA; SAW delay-line sensors; SAW liquid level sensors; aerospace applications; frequency 15 MHz; frequency 915 MHz; ground base and space exploration; pulsed noise-generated signal; surface acoustic wave pulsed-correlator transceiver; wireless passive surface acoustic wave sensor transceiver; Receivers; Signal to noise ratio; Surface acoustic waves; Temperature sensors; Transceivers; Aerospace; correlator; matched filter; orthogonal; sensor; signal to noise ratio; surface acoustic wave; transceiver; wireless;
Journal_Title :
Sensors Journal, IEEE
DOI :
10.1109/JSEN.2014.2329179