Title :
Optical-Ultrasonic Heterogeneous Sensor Based on Soft-Computing Models
Author :
Possetti, Gustavo R. C. ; Terada, Galileu G. ; Daciuk, Rafael J. ; Yutaka Ofuchi, Cesar ; Neves, Flavio ; Fabris, Jose L. ; Muller, Marcia ; Arruda, Lucia Valeria R.
Author_Institution :
Water & Sanitation Co. of Parana State, Curitiba, Brazil
Abstract :
A heterogeneous sensor system to determine the ethanol concentration in ethanol-water solution is demonstrated. The system consists of an optical-fiber refractometric transducer based on a long-period grating and a pair of ultrasonic transducers in transmission-reception mode, connected to a stand-alone electronic board for data acquisition, storage, and signal preprocessing. To implement a coherent sensor fusion from both measurement techniques, two soft computing methods (artificial neural network model and neuro-fuzzy model) are studied. A comparative analysis of these models was carried out based on the measured data. The best performance was obtained with the neural-network-based model. This model showed that it was able to correlate the responses of the optical-fiber transducer and the ultrasound system with the ethanol-water concentration. The final performance of the heterogeneous system is better within the whole range of concentrations, even if compared with the best performance of the individual sensors for limited ranges.
Keywords :
chemical sensors; chemical variables measurement; computerised instrumentation; data acquisition; diffraction gratings; fibre optic sensors; fuzzy logic; light transmission; neural nets; organic compounds; refractive index measurement; refractometers; sensor fusion; ultrasonic transducers; uncertainty handling; water; artificial neural network model; data acquisition; data storage; electronic board; ethanol concentration; ethanol-water solution; long-period grating; measurement technique; neurofuzzy model; optical-fiber refractometric transducer; optical-ultrasonic heterogeneous sensor system; sensor fusion; signal preprocessing; soft-computing model; transmission-reception mode; ultrasonic transducer; Computational modeling; Ethanol; Optical sensors; Standards; Temperature measurement; Ultrasonic variables measurement; Uncertainty; Concentration measurement; data fusion; ethanol sensor; ethanol sensor.;
Journal_Title :
Instrumentation and Measurement, IEEE Transactions on
DOI :
10.1109/TIM.2015.2415071