This paper develops response cumulant differential equations (CDEs) that can be used to calculate response cumulants for dynamic systems under non-Gaussian, delta-correlated excitations. The derived CDEs apply to both linear and nonlinear systems, an improvement over the previous CDEs that are only applicable to linear systems. The new CDEs also can be used much more efficiently than the previous version. The problem of a second-order, single-degree-of-freedom (SDOF) linear system subjected to non-Gaussian, delta-correlated excitations is given to illustrate how to use the new CDEs for calculating response cumulants. Closed-form solutions for the stationary response cumulants are presented
An explicit solution for the nonstationary second moment response and the evolutionary spectral dens...
An explicit solution for the nonstationary second moment response and the evolutionary spectral dens...
A semi-analytical method is proposed for determining the response of a lightly damped single-degree-...
This paper develops response cumulant differential equations (CDEs) that can be used to calculate re...
Cumulant differential equations (CDEs) that can be employed to calculate response cumulants for line...
A general framework is presented for deriving the differential equations governing the evolution of ...
A relatively straightforward formulation is presented for deriving the differential equations govern...
A relatively straightforward formulation is presented for deriving the differential equations govern...
A relatively straightforward formulation is presented for deriving the differential equations govern...
This paper investigates the response of a nonlinear oscillator subject to Poisson-distributed pulse ...
This paper investigates the response of a nonlinear oscillator subject to Poisson-distributed pulse ...
An overview is given of some developments in the formulation of state-space differential equations g...
This paper presents an efficient method for calculating the response statistics of dynamic systems s...
This paper presents an efficient method for calculating the response statistics of dynamic systems s...
In a recent paper1) a differential equation was studied which involves a stochastic process having t...
An explicit solution for the nonstationary second moment response and the evolutionary spectral dens...
An explicit solution for the nonstationary second moment response and the evolutionary spectral dens...
A semi-analytical method is proposed for determining the response of a lightly damped single-degree-...
This paper develops response cumulant differential equations (CDEs) that can be used to calculate re...
Cumulant differential equations (CDEs) that can be employed to calculate response cumulants for line...
A general framework is presented for deriving the differential equations governing the evolution of ...
A relatively straightforward formulation is presented for deriving the differential equations govern...
A relatively straightforward formulation is presented for deriving the differential equations govern...
A relatively straightforward formulation is presented for deriving the differential equations govern...
This paper investigates the response of a nonlinear oscillator subject to Poisson-distributed pulse ...
This paper investigates the response of a nonlinear oscillator subject to Poisson-distributed pulse ...
An overview is given of some developments in the formulation of state-space differential equations g...
This paper presents an efficient method for calculating the response statistics of dynamic systems s...
This paper presents an efficient method for calculating the response statistics of dynamic systems s...
In a recent paper1) a differential equation was studied which involves a stochastic process having t...
An explicit solution for the nonstationary second moment response and the evolutionary spectral dens...
An explicit solution for the nonstationary second moment response and the evolutionary spectral dens...
A semi-analytical method is proposed for determining the response of a lightly damped single-degree-...