Title :
Real-Time Vibratory Strain Sensing Using Passive Wireless Antenna Sensor
Author :
Jun Yao ; Tjuatja, Saibun ; Haiying Huang
Author_Institution :
Dept. of Electr. Eng., Univ. of Texas at Arlington, Arlington, TX, USA
Abstract :
A wireless vibratory strain sensing system, which consists of a passive wireless sensor and a dynamic wireless interrogator, is presented in this paper. The wireless sensor utilizes a microstrip patch antenna as the strain sensing element since its resonant frequency is a function of the tensile strain it experiences. A dynamic wireless interrogator that is based on the principle of frequency modulated continuous wave radar and permits real-time monitoring of the antenna resonant frequency was designed and validated. The principle of operation of the dynamic wireless sensing system was first described, followed by the description of the design and implementation of the antenna-sensor node as well as the wireless interrogator. After calibrating the antenna-sensor response using static tensile tests, vibratory tensile tests were carried out by subjecting the test specimen to sinusoidal tensile loading at different frequencies. Antenna strain sensing accuracy was evaluated by comparing the strain readings from the antenna-sensor and the reference foil strain gauge. It reveals that the antenna-based strain sensing system has good dynamic strain tracking ability.
Keywords :
dynamic testing; microstrip antennas; passive networks; real-time systems; strain gauges; strain sensors; tensile testing; vibration measurement; wireless sensor networks; dynamic wireless interrogator; frequency modulated continuous wave radar; microstrip patch antenna; passive wireless antenna sensor; real-time vibratory strain sensing; reference foil strain gauge; resonant frequency; static tensile tests; strain tracking ability; tensile strain; vibratory tensile tests; Antennas; Frequency modulation; Resonant frequency; Sensors; Strain; Wireless communication; Wireless sensor networks; Dynamic interrogation; FMCW; dynamic interrogation; real-time digital data processing; structural health monitoring; vibration sensing; wireless antenna sensor;
Journal_Title :
Sensors Journal, IEEE
DOI :
10.1109/JSEN.2015.2416672