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- W2002798637 abstract "Many acoustic systems require an equivalent electromechanical model to describe their behavior. As a result, a variety of models has been described in the literature including that of Mason, KLM, and Redwood. Although these models can describe complex acoustic systems, it is often difficult to extract circuit parameters for such systems using traditional theory. Aspects of mode superposition and frequency pulling between modes cause traditional theory to become increasingly complex in predicting equivalent circuit values. As a solution to this, an adaptive breeder algorithm is utilized as a means of predicting multiple resonance modes interacting with one another. A liquid-filled piezoelectric cylinder is used as an acoustic system to represent coupled piezoelectric and liquid vibrational modes. Using a variation of Mason’s transmission line model, an adaptive mutation breeder algorithm is used to predict the spectral response measured by an impedance analyzer. The acoustic model is shown to fit almost identically over the measured data for a variety of different-sized cylinders and liquids. It is further shown that the breeder algorithms may be used to predict the sound velocity and density of the liquid inside the cylinder." @default.
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- W2002798637 date "2005-09-01" @default.
- W2002798637 modified "2023-09-27" @default.
- W2002798637 title "An adaptive mutation breeder algorithm for determining equivalent circuit parameters of a liquid‐filled piezoelectric cylinder" @default.
- W2002798637 doi "https://doi.org/10.1121/1.4785836" @default.
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