A new technique is proposed for determining the response of multi-degree-of-freedom nonlinear systems with singular parameter matrices subject to combined stochastic and deterministic excitations. Singular matrices in the governing equations of motion potentially account for the presence of constraint equations in the system. They also appear when a redundant coordinates modeling is adopted to derive the equations of motion of complex multibody systems. Since the system is subject to both stochastic and deterministic excitations, its response also has two components, namely a deterministic and a stochastic component. Therefore, using the harmonic balance method to treat the deterministic component leads to an overdetermined system of equati...
Both time- and frequency-domain solution techniques are developed for determining the response of li...
An approach is developed based on polynomial matrix theory for formulating the equations of motion a...
An approximate approach is presented for determining the stationary random response of a general mul...
A new technique is proposed for determining the response of multi-degree-of-freedom nonlinear system...
A new technique is proposed for determining the response of multi-degree-of-freedom nonlinear system...
A new technique is proposed for determining the response of multi-degree-of-freedom nonlinear system...
A new technique is proposed for determining the response of multi-degree-of-freedom nonlinear system...
A new technique is proposed for determining the response of multi-degree-of-freedom nonlinear comple...
A semi-analytical method is proposed for determining the response of a lightly damped single-degree-...
A semi-analytical method is proposed for determining the response of a lightly damped single-degree-...
A frequency domain methodology is developed for stochastic response determination of multi-degree-of...
A semi-analytical method is proposed for determining the response of a lightly damped single-degree-...
A framework is developed for determining the stochastic response of linear multi-degree-of-freedom (...
A new approximate analytical technique is proposed for determining the response evolutionary power s...
Both time- and frequency-domain solution techniques are developed for determining the response of li...
Both time- and frequency-domain solution techniques are developed for determining the response of li...
An approach is developed based on polynomial matrix theory for formulating the equations of motion a...
An approximate approach is presented for determining the stationary random response of a general mul...
A new technique is proposed for determining the response of multi-degree-of-freedom nonlinear system...
A new technique is proposed for determining the response of multi-degree-of-freedom nonlinear system...
A new technique is proposed for determining the response of multi-degree-of-freedom nonlinear system...
A new technique is proposed for determining the response of multi-degree-of-freedom nonlinear system...
A new technique is proposed for determining the response of multi-degree-of-freedom nonlinear comple...
A semi-analytical method is proposed for determining the response of a lightly damped single-degree-...
A semi-analytical method is proposed for determining the response of a lightly damped single-degree-...
A frequency domain methodology is developed for stochastic response determination of multi-degree-of...
A semi-analytical method is proposed for determining the response of a lightly damped single-degree-...
A framework is developed for determining the stochastic response of linear multi-degree-of-freedom (...
A new approximate analytical technique is proposed for determining the response evolutionary power s...
Both time- and frequency-domain solution techniques are developed for determining the response of li...
Both time- and frequency-domain solution techniques are developed for determining the response of li...
An approach is developed based on polynomial matrix theory for formulating the equations of motion a...
An approximate approach is presented for determining the stationary random response of a general mul...