The Hamiltonian-based frequency formulation has been hailed as an unprecedented success for it gives a straightforward insight into a complex nonlinear vibration system with simple calculation. This paper gives a systematical analysis of the formulation, and two simplified formulations are suggested. The cubic-quintic Duffing oscillator is used as an example to show extremely simple calculation and remarkable accuracy. It can be used as a paradigm for many other applications, and the one-step solving process has cleaned up the road of the nonlinear vibration theory.
Many nonlinear systems in industry including oscillators can be simulated as a mass-spring system. I...
An analytical technique has been developed based on the harmonic balance method to obtain approximat...
In this paper, the Hamiltonian approach is extended for solving vibrations of nonlinear conservative...
Abstract—This paper presents a new approach for solving accurate approximate analytical solution for...
Nonlinear oscillators arise in physics and engineering. A fast insight into a nonlinear oscillator’s...
In this paper we study the periodic solutions of free vibration of mechanical systems with third and...
Abstract Due to the growing concentration in the field of the nonlinear oscillators (NOSs), the pres...
In this paper we study the periodic solutions of free vibration of mechanical systems with third and...
In this article, He's energy balance method is applied for calculating angular frequencies of nonlin...
WOS: 000290014600064In this paper, Hamiltonian Approach (HA) is applied to obtain the analytical app...
The higher order Hamiltonian approach is utilized to elicit approximate solutions for two nonlinear ...
WOS: 000321683200004The higher order Hamiltonian approach is utilized to elicit approximate solution...
Many nonlinear systems in industry including oscillators can be simulated as a mass-spring system. I...
AbstractHe’s frequency formulation is used to obtain the relationship between the frequency and ampl...
In this paper, a reliable technique for calculating angular frequencies of nonlinear oscillators is ...
Many nonlinear systems in industry including oscillators can be simulated as a mass-spring system. I...
An analytical technique has been developed based on the harmonic balance method to obtain approximat...
In this paper, the Hamiltonian approach is extended for solving vibrations of nonlinear conservative...
Abstract—This paper presents a new approach for solving accurate approximate analytical solution for...
Nonlinear oscillators arise in physics and engineering. A fast insight into a nonlinear oscillator’s...
In this paper we study the periodic solutions of free vibration of mechanical systems with third and...
Abstract Due to the growing concentration in the field of the nonlinear oscillators (NOSs), the pres...
In this paper we study the periodic solutions of free vibration of mechanical systems with third and...
In this article, He's energy balance method is applied for calculating angular frequencies of nonlin...
WOS: 000290014600064In this paper, Hamiltonian Approach (HA) is applied to obtain the analytical app...
The higher order Hamiltonian approach is utilized to elicit approximate solutions for two nonlinear ...
WOS: 000321683200004The higher order Hamiltonian approach is utilized to elicit approximate solution...
Many nonlinear systems in industry including oscillators can be simulated as a mass-spring system. I...
AbstractHe’s frequency formulation is used to obtain the relationship between the frequency and ampl...
In this paper, a reliable technique for calculating angular frequencies of nonlinear oscillators is ...
Many nonlinear systems in industry including oscillators can be simulated as a mass-spring system. I...
An analytical technique has been developed based on the harmonic balance method to obtain approximat...
In this paper, the Hamiltonian approach is extended for solving vibrations of nonlinear conservative...