A specific topology of Digital Nonlinear Oscillators (DNOs) has been implemented by using commercial off-the-shelf digital components to experimentally verify and demonstrate the capability of these circuits to support complex dynamics, independently from their implementation technology. In detail, a direct experimental evidence of the DNO dynamical behavior is presented at the analog level with a bifurcation diagram analysis, investigation of periodic and chaotic attractors, and dynamical stability. The autonomous circuit has been investigated as a source of entropy, adopting different figures of merit, including the Lempel–Ziv Complexity, to evaluate the dynamics measured under different operating conditions.
Addabbo, T., Fort, A., Moretti, R., Spinelli, F., Vignoli, V. (2023). Complex Dynamics in Digital Nonlinear Oscillators: Experimental Analysis and Verification. ELECTRONICS, 12(11) [10.3390/electronics12112459].
Complex Dynamics in Digital Nonlinear Oscillators: Experimental Analysis and Verification
Addabbo T.;Fort A.;Moretti R.
;Spinelli F.;Vignoli V.
2023-01-01
Abstract
A specific topology of Digital Nonlinear Oscillators (DNOs) has been implemented by using commercial off-the-shelf digital components to experimentally verify and demonstrate the capability of these circuits to support complex dynamics, independently from their implementation technology. In detail, a direct experimental evidence of the DNO dynamical behavior is presented at the analog level with a bifurcation diagram analysis, investigation of periodic and chaotic attractors, and dynamical stability. The autonomous circuit has been investigated as a source of entropy, adopting different figures of merit, including the Lempel–Ziv Complexity, to evaluate the dynamics measured under different operating conditions.File | Dimensione | Formato | |
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https://hdl.handle.net/11365/1235674