In this survey article we give the basic description of the interpolation based derivative free optimization methods and their variants. We review the recent contributions dealing with maintaining the geometry of the interpolation set, the management of the trust region radius and the stopping criteria. Derivative free algorithms developed for problems with some structure, like for partially separable functions, are discussed. Two different versions of derivative free algorithms are applied for the optimization of the configuration of the geometry of a stirrer. Numerical results are presented to show the applicability of the algorithms to practical problems
In this paper, we investigate two ideas in the context of the interpolation-based optimization parad...
Derivative-free optimization involves the methods used to minimize an expensive objective functionwh...
A new derivative-free optimization method for unconstrained optimization of partially separable func...
Derivative free optimization algorithms are implementations of trust region based derivative-free me...
We present an introduction to a new class of derivative free methods for unconstrained optimization....
We present an introduction to a new class of derivative free methods for unconstrained optimization....
A numerical study of model-based methods for derivative-free optimization is presented. These method...
A numerical study of model-based methods for derivative-free optimization is presented. These method...
Some of the reasons to apply derivative-free optimization are the following: Nowadays computer hardw...
A numerical study of model-based methods for derivative-free optimization is presented. These method...
A numerical study of model-based methods for derivative-free optimization is presented. These method...
We consider some algorithms for unconstrained minimization without derivatives that form linear or q...
Includes bibliographical references and index.Introduction -- Sampling and linear models -- Interpol...
Abstract—A new derivative-free optimization method for unconstrained optimization of partially separ...
In this paper, we investigate two ideas in the context of the interpolation-based optimization parad...
In this paper, we investigate two ideas in the context of the interpolation-based optimization parad...
Derivative-free optimization involves the methods used to minimize an expensive objective functionwh...
A new derivative-free optimization method for unconstrained optimization of partially separable func...
Derivative free optimization algorithms are implementations of trust region based derivative-free me...
We present an introduction to a new class of derivative free methods for unconstrained optimization....
We present an introduction to a new class of derivative free methods for unconstrained optimization....
A numerical study of model-based methods for derivative-free optimization is presented. These method...
A numerical study of model-based methods for derivative-free optimization is presented. These method...
Some of the reasons to apply derivative-free optimization are the following: Nowadays computer hardw...
A numerical study of model-based methods for derivative-free optimization is presented. These method...
A numerical study of model-based methods for derivative-free optimization is presented. These method...
We consider some algorithms for unconstrained minimization without derivatives that form linear or q...
Includes bibliographical references and index.Introduction -- Sampling and linear models -- Interpol...
Abstract—A new derivative-free optimization method for unconstrained optimization of partially separ...
In this paper, we investigate two ideas in the context of the interpolation-based optimization parad...
In this paper, we investigate two ideas in the context of the interpolation-based optimization parad...
Derivative-free optimization involves the methods used to minimize an expensive objective functionwh...
A new derivative-free optimization method for unconstrained optimization of partially separable func...