An Auto-Calibrated Measurement System for 1-D Matrices of Impedimetric Sensors

Impedance measurement ICs are widely used in embedded systems for single-sensor measurements. Thereby, the impedance value of the target sensor is calculated by comparing its measurement signal with one of a given reference element. This is known as the calibration process. To automate the calibrati...

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Veröffentlicht in:IEEE sensors journal 2024-05, Vol.24 (9), p.14970-14976
Hauptverfasser: Hu, Zheng, Kallel, Ahmed Yahia, Lu, Tianqi, Al-Hamry, Ammar, Kanoun, Olfa
Format: Artikel
Sprache:eng
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Zusammenfassung:Impedance measurement ICs are widely used in embedded systems for single-sensor measurements. Thereby, the impedance value of the target sensor is calculated by comparing its measurement signal with one of a given reference element. This is known as the calibration process. To automate the calibration process for multisensor measurements, multiplexers (MUXs) are recommended. But the switch on-resistances of MUXs cause additional measurement deviations, unless expensive MUXs with very low switch on-resistances or buffer functions are used. To overcome the need for specially designed MUXs, a circuit structure based on two MUXs in the feedback loop of one voltage follower is proposed in this work, with dc bias circuits. This solution is experimentally validated in a prototype system based on the AD5933 chip for a 1-D sensor matrix. Compared to the common single MUX system, the proposed approach has suppressed the average measurement deviation from 6.01% to 0.06% in the impedance magnitude measurements and from 10.75% to 0.13% for the resistive targets.
ISSN:1530-437X
1558-1748
DOI:10.1109/JSEN.2024.3366948