We present new solutions for the dynamics of a pendulum energy converter which is vertically excited at its suspension point. Thereby, we deal with a random excitation by a non‐white Gaussian stochastic process. We formulate the pendulum energy converter as a weakly perturbed Hamiltonian system. The random process across the energy levels of the Hamiltonian system is then approximated by a Markov process, which is obtained by stochastic averaging. This procedure leads to analytical results for the energy of the pendulum motion, which are used for analyzing the required probability of reaching higher energy states of the pendulum energy converter in order to maximize the harvested energy
Recent years have shown increasing interest of researchers in energy harvesting systems designed to ...
This paper studies a model of energy harvester that consists of an electromechanical pendulum system...
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We present new solutions for the dynamics of a pendulum energy converter which is vertically excited...
A method to extract energy from an excitation which is stochastic in nature is presented. The experi...
AbstractThis paper studies the rotational motion of a parametrically excited pendulum, dynamics of w...
International audienceThis paper deals with the nonlinear dynamics of a mechanical system which cons...
This paper presents a numerical study of an autoparametric system composed of two elements: a pendul...
Recently an elastic inverted pendulum structure was proposed as a means to make nonlinear energy har...
This paper is concerned with the stochastic stability of an inverted pendulum with a point mass at t...
Abstract In this paper a mathematical model was found, and numerical results obtained for the pendul...
With the rapid development of electronic technology, the power consumption of electronic devices has...
AbstractThis paper studies a model of energy harvester that consists of an electromechanical pendulu...
Nonlinear vibration systems with adjustable stiffness property have attracted considerable attention...
Proceedings, pp. 395—407 This paper is concerned with the study of some types of nonlinear oscillato...
Recent years have shown increasing interest of researchers in energy harvesting systems designed to ...
This paper studies a model of energy harvester that consists of an electromechanical pendulum system...
This paper analyzes a nonlinear stochastic dynamics of a vibro-impact electromechanical system compo...
We present new solutions for the dynamics of a pendulum energy converter which is vertically excited...
A method to extract energy from an excitation which is stochastic in nature is presented. The experi...
AbstractThis paper studies the rotational motion of a parametrically excited pendulum, dynamics of w...
International audienceThis paper deals with the nonlinear dynamics of a mechanical system which cons...
This paper presents a numerical study of an autoparametric system composed of two elements: a pendul...
Recently an elastic inverted pendulum structure was proposed as a means to make nonlinear energy har...
This paper is concerned with the stochastic stability of an inverted pendulum with a point mass at t...
Abstract In this paper a mathematical model was found, and numerical results obtained for the pendul...
With the rapid development of electronic technology, the power consumption of electronic devices has...
AbstractThis paper studies a model of energy harvester that consists of an electromechanical pendulu...
Nonlinear vibration systems with adjustable stiffness property have attracted considerable attention...
Proceedings, pp. 395—407 This paper is concerned with the study of some types of nonlinear oscillato...
Recent years have shown increasing interest of researchers in energy harvesting systems designed to ...
This paper studies a model of energy harvester that consists of an electromechanical pendulum system...
This paper analyzes a nonlinear stochastic dynamics of a vibro-impact electromechanical system compo...