Equivalent Electronic Circuit of a System of Oscillators Connected with Periodically Variable Stiffness

Author:

Seth SoumyajitORCID,Kudra GrzegorzORCID,Witkowski KrzysztofORCID,Awrejcewicz JanORCID

Abstract

In this paper, we have shown an electronic circuit equivalence of a mechanical system consisting of two oscillators coupled with each other. The mechanical design has the effects of the magnetic spring force resistance force, and the spring constant of the system is periodically varying. We have shown that the system’s state variables, such as the displacements and the velocities, under the effects of different forces, lead to some nonlinear behaviors, like a transition from the fixed point attractors to the chaotic attractors through the periodic and quasi-periodic oscillations. We have verified those numerically obtained phenomena using the analog electronic circuit of this mechanical system.

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

Reference30 articles.

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2. Deterministic Chaos in Nonlinear Circuits with Electric Arc;Sidorets,2013

3. Modeling and dynamics analysis of a forced two-degree-of-freedom mechanical oscillator with magnetic springs

4. Resonance response interaction without internal resonance in vibratory energy harvesting

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