peer reviewedAn implicit time integration meshfree collocation method for solving linear and nonlinear ordinary differential equations (ODEs) based on interpolating moving least squares technique, which uses singular weights for constructing ansatz functions, is presented. On an example of a system of equations for Foucault pendulum, the flexibility of the proposed approach is shown and the accuracy, convergence, and stability properties are investigated. In a nonlinear case, the method gives accurate results, which is demonstrated by the solution of Lorenz equations. The typical trajectory patterns, e.g. butterfly pattern, were observed and the properties of the method are compared to those of a higher-order time integration method. © 2011...
International audienceThis work analyzes a least-squares method in order to solve implicit time sche...
Abstract. We use generalized Gaussian quadratures for expo-nentials to develop a new ODE solver. Nod...
Using generalized collocation techniques based on fitting functions that are trigonometric (rather t...
peer reviewedA novel space-time meshfree collocation method (STMCM) for solving systems of non-linea...
International audienceThis paper introduces a new class of numerical methods for the time integratio...
peer reviewedAn innovative Space-Time Meshfree Collocation Method (STMCM) for solving systems of non...
International audienceThis paper introduces a new class of numerical methods for the time integratio...
To solve ODEs systems, implicit numerical schemes are often used because of their good stability. Am...
In this paper, a new class of Runge–Kutta-type collocation methods for the numerical integration of ...
International audienceThis paper shows the efficiency of collocation methods for integrating ordinar...
AbstractThis article investigates the numerical solution of the nonlinear integro-differential equat...
The current work presents a computational scheme to solve weakly singular integral equations of the ...
Stiff systems of ordinary differential equations (ODEs) and sparse training data are common in scien...
A truly meshless approach, point weighted least-squares (PWLS) method, is developed in this paper. I...
This chapter describes implicit time integration methods developed by four TILDA partners for the ap...
International audienceThis work analyzes a least-squares method in order to solve implicit time sche...
Abstract. We use generalized Gaussian quadratures for expo-nentials to develop a new ODE solver. Nod...
Using generalized collocation techniques based on fitting functions that are trigonometric (rather t...
peer reviewedA novel space-time meshfree collocation method (STMCM) for solving systems of non-linea...
International audienceThis paper introduces a new class of numerical methods for the time integratio...
peer reviewedAn innovative Space-Time Meshfree Collocation Method (STMCM) for solving systems of non...
International audienceThis paper introduces a new class of numerical methods for the time integratio...
To solve ODEs systems, implicit numerical schemes are often used because of their good stability. Am...
In this paper, a new class of Runge–Kutta-type collocation methods for the numerical integration of ...
International audienceThis paper shows the efficiency of collocation methods for integrating ordinar...
AbstractThis article investigates the numerical solution of the nonlinear integro-differential equat...
The current work presents a computational scheme to solve weakly singular integral equations of the ...
Stiff systems of ordinary differential equations (ODEs) and sparse training data are common in scien...
A truly meshless approach, point weighted least-squares (PWLS) method, is developed in this paper. I...
This chapter describes implicit time integration methods developed by four TILDA partners for the ap...
International audienceThis work analyzes a least-squares method in order to solve implicit time sche...
Abstract. We use generalized Gaussian quadratures for expo-nentials to develop a new ODE solver. Nod...
Using generalized collocation techniques based on fitting functions that are trigonometric (rather t...