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- W3012148240 abstract "This paper presents a fractional-order equivalent circuit to better model the voltammetric sensor response in comparison with some existing fractional circuits generally used to model various electrochemical phenomena. The true behaviour of an electrochemical process is often described by a fractional-order model (FOM). Here, we propose a fractional-order circuit to model the current response of the voltammetric taste sensor system for black tea liquor. This current is due to the electrochemical reactions that occur when a voltage pulse is applied across the electrodes. So far, the change in model order to a fraction has not been considered in a circuit model of taste measurement systems. Therefore, this work estimates the equivalent circuit in the fractional-order domain to obtain a more pragmatic model of such a system. The methodology selects the most suitable fractional-order transfer function (FOTF) structure, optimally estimates the model parameters, and decomposes the FOTF into a fractional-order equivalent circuit. The effect of concentration of tea samples on the parameters values and the significance of electrodes towards potential discrimination of samples is also investigated. The estimation of such circuits without direct measurement of complex impedance is the main advantage of the approach." @default.
- W3012148240 created "2020-03-23" @default.
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- W3012148240 date "2020-07-15" @default.
- W3012148240 modified "2023-09-24" @default.
- W3012148240 title "An Improved Fractional-Order Circuit Model for Voltammetric Taste Sensor System With Infused Tea as Analyte" @default.
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- W3012148240 doi "https://doi.org/10.1109/jsen.2020.2979994" @default.
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