peer-reviewedEngineering systems are typically governed by systems of high-order differential equations which require efficient numerical methods to provide reliable solutions, subject to imposed constraints. The conventional approach by direct approximation of system variables can potentially incur considerable error due to high sensitivity of high-order numerical differentiation to noise, thus necessitating improved techniques which can better satisfy the requirements of numerical accuracy desirable in solution of high-order systems. To this end, a novel inverse differential quadrature method (iDQM) is proposed for approximation of engineering systems. A detailed formulation of iDQM based on integration and DQM inversion is developed sep...
This paper is concerned with the application of radial basis function networks (RBFNs) for numerical...
Most ordinary differential equations (ODEs) can be solved using simulation technique (ST), which, ho...
Most ordinary differential equations (ODEs) can be solved using simulation technique (ST), which, ho...
The numerical solution of linear and nonlinear partial differential equations plays a prominent rol...
In this work, accurate solutions to linear and nonlinear diffusion equations were introduced. A poly...
In this work, accurate solutions to linear and nonlinear diffusion equations were introduced. A poly...
Modern Tools to Perform Numerical DifferentiationThe original direct differential quadrature (DQ) me...
The technique of differential quadrature (DQ) for the solution of a partial differential equation is...
In this work, accurate solutions to linear and nonlinear diffusion equations were introduced. A poly...
In this article, we presented an improved formulations based on Bernstein polynomial in calculate th...
Nowadays, most of the ordinary differential equations (ODEs) can be solved by modelica-based approac...
We compare the accuracy of numerical integral methods like Newton-Cotes method and Gaussian Quadratu...
AbstractThe differential quadrature element method (DQEM) has been proposed. The element weighting c...
The occurrence of spurious complex eigenvalues is a serious stability problem in many differential q...
AbstractThe numerical differentiation is often used when dealing with the differential equations. Us...
This paper is concerned with the application of radial basis function networks (RBFNs) for numerical...
Most ordinary differential equations (ODEs) can be solved using simulation technique (ST), which, ho...
Most ordinary differential equations (ODEs) can be solved using simulation technique (ST), which, ho...
The numerical solution of linear and nonlinear partial differential equations plays a prominent rol...
In this work, accurate solutions to linear and nonlinear diffusion equations were introduced. A poly...
In this work, accurate solutions to linear and nonlinear diffusion equations were introduced. A poly...
Modern Tools to Perform Numerical DifferentiationThe original direct differential quadrature (DQ) me...
The technique of differential quadrature (DQ) for the solution of a partial differential equation is...
In this work, accurate solutions to linear and nonlinear diffusion equations were introduced. A poly...
In this article, we presented an improved formulations based on Bernstein polynomial in calculate th...
Nowadays, most of the ordinary differential equations (ODEs) can be solved by modelica-based approac...
We compare the accuracy of numerical integral methods like Newton-Cotes method and Gaussian Quadratu...
AbstractThe differential quadrature element method (DQEM) has been proposed. The element weighting c...
The occurrence of spurious complex eigenvalues is a serious stability problem in many differential q...
AbstractThe numerical differentiation is often used when dealing with the differential equations. Us...
This paper is concerned with the application of radial basis function networks (RBFNs) for numerical...
Most ordinary differential equations (ODEs) can be solved using simulation technique (ST), which, ho...
Most ordinary differential equations (ODEs) can be solved using simulation technique (ST), which, ho...