Title :
An Embedded Passive Resonant Sensor Using Frequency Diversity Technology for High-Temperature Wireless Measurement
Author :
Chen Li ; Qiulin Tan ; Wendong Zhang ; Chenyang Xue ; Jijun Xiong
Author_Institution :
Sci. & Technol. on Electron. Test & Meas. Lab., North Univ. of China, Taiyuan, China
Abstract :
This paper presents an embedded wireless passive temperature sensor for measurements in high-temperature applications, such as compressors and turbine engines. The performance of the sensor was improved by optimizing its performance parameters. A high-temperature-resistant material was used, and an embedded structure design was introduced to enable the sensor to operate in high-temperature environments. A series LC resonant circuit containing a fixed inductance coil and variable capacitance that varies with temperature was embedded in an alumina ceramic substrate using high-temperature cofired ceramic technology. The temperature in the high-temperature environment was detected wirelessly via the frequency diversity of the sensor. Furthermore, the experimental results showed that the sensor can measure temperatures ranging from room temperature to 1000 °C, and the average sensitivity of the sensor is ~2 KHz/°C.
Keywords :
LC circuits; ceramics; coils; frequency measurement; intelligent sensors; radiotelemetry; resonators; temperature measurement; temperature sensors; wireless sensor networks; alumina ceramic substrate; compressor; embedded passive resonant sensor; embedded structure design; embedded wireless passive temperature sensor; fixed inductance coil; frequency diversity; frequency diversity technology; high-temperature cofired ceramic technology; high-temperature wireless measurement; high-temperature-resistant material; series LC resonant circuit; temperature 293 K to 1000 degC; turbine engine; variable capacitance; Ceramics; Coils; Inductance; Resonant frequency; Temperature measurement; Temperature sensors; HTCC technology; Wireless measurement; embedded LC resonant sensor; passive temperature sensor;
Journal_Title :
Sensors Journal, IEEE
DOI :
10.1109/JSEN.2014.2360392