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Reliable e-nose for air toxicity monitoring by filter diagonalization method

Macías-Quijas, RicardoVelázquez, RamiroFazio, Roberto DeVisconti, PaoloGiannoccaro, Nicola IvanLay-Ekuakille, Aimé
International Journal of Electrical and Computer Engineering (IJECE) (Sinta 1)Vol. 0 No. 01 April 2022
DOI10.11591/ijece.v12i2.pp1286-1298

Abstrak

This paper introduces a compact, affordable electronic nose (e-nose) device devoted to detect the presence of toxic compounds that could affect human health, such as carbon monoxide, combustible gas, hydrogen, methane, and smoke, among others. Such artificial olfaction device consists of an array of six metal oxide semiconductor (MOS) sensors and a computer-based information system for signal acquisition, processing, and visualization. This study further proposes the use of the filter diagonalization method (FDM) to extract the spectral contents of the signals obtained from the sensors. Preliminary results show that the prototype is functional and that the FDM approach is suitable for a later classification stage. Example deployment scenarios of the proposed e-nose include indoor facilities (buildings and warehouses), compromised air quality places (mines and sanitary landfills), public transportation, mobile robots, and wireless sensor networks.

Kata Kunci

electronic nose (e-nose)filter diagonalization methodMOS gas sensorsensor characterizationtoxic compounds

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Reliable e-nose for air toxicity monitoring by filter diagonalization method | International Journal of Electrical and Computer Engineering (IJECE) | Publiora