Sparse dictionary learningSparse dictionary learning (also known as sparse coding or SDL) is a representation learning method which aims at finding a sparse representation of the input data in the form of a linear combination of basic elements as well as those basic elements themselves. These elements are called atoms and they compose a dictionary. Atoms in the dictionary are not required to be orthogonal, and they may be an over-complete spanning set. This problem setup also allows the dimensionality of the signals being represented to be higher than the one of the signals being observed.
Acquisition compriméeL'acquisition comprimée (en anglais compressed sensing) est une technique permettant de trouver la solution la plus parcimonieuse d'un système linéaire sous-déterminé. Elle englobe non seulement les moyens pour trouver cette solution mais aussi les systèmes linéaires qui sont admissibles. En anglais, elle porte le nom de Compressive sensing, Compressed Sampling ou Sparse Sampling.
Sparse approximationSparse approximation (also known as sparse representation) theory deals with sparse solutions for systems of linear equations. Techniques for finding these solutions and exploiting them in applications have found wide use in , signal processing, machine learning, medical imaging, and more. Consider a linear system of equations , where is an underdetermined matrix and . The matrix (typically assumed to be full-rank) is referred to as the dictionary, and is a signal of interest.
Potts modelIn statistical mechanics, the Potts model, a generalization of the Ising model, is a model of interacting spins on a crystalline lattice. By studying the Potts model, one may gain insight into the behaviour of ferromagnets and certain other phenomena of solid-state physics. The strength of the Potts model is not so much that it models these physical systems well; it is rather that the one-dimensional case is exactly solvable, and that it has a rich mathematical formulation that has been studied extensively.
Lattice model (physics)In mathematical physics, a lattice model is a mathematical model of a physical system that is defined on a lattice, as opposed to a continuum, such as the continuum of space or spacetime. Lattice models originally occurred in the context of condensed matter physics, where the atoms of a crystal automatically form a lattice. Currently, lattice models are quite popular in theoretical physics, for many reasons. Some models are exactly solvable, and thus offer insight into physics beyond what can be learned from perturbation theory.
Méthode d'EulerEn mathématiques, la méthode d'Euler, nommée ainsi en l'honneur du mathématicien Leonhard Euler (1707 — 1783), est une procédure numérique pour résoudre par approximation des équations différentielles du premier ordre avec une condition initiale. C'est la plus simple des méthodes de résolution numérique des équations différentielles. thumb|Illustration de la méthode d'Euler explicite : l'avancée se fait par approximation sur la tangente au point initial.
Matching pursuitMatching pursuit (MP) is a sparse approximation algorithm which finds the "best matching" projections of multidimensional data onto the span of an over-complete (i.e., redundant) dictionary . The basic idea is to approximately represent a signal from Hilbert space as a weighted sum of finitely many functions (called atoms) taken from . An approximation with atoms has the form where is the th column of the matrix and is the scalar weighting factor (amplitude) for the atom . Normally, not every atom in will be used in this sum.
Méthode itérativeEn analyse numérique, une méthode itérative est un procédé algorithmique utilisé pour résoudre un problème, par exemple la recherche d’une solution d’un système d'équations ou d’un problème d’optimisation. En débutant par le choix d’un point initial considéré comme une première ébauche de solution, la méthode procède par itérations au cours desquelles elle détermine une succession de solutions approximatives raffinées qui se rapprochent graduellement de la solution cherchée. Les points générés sont appelés des itérés.
Modèle d'IsingLe modèle d'Ising est un modèle de physique statistique qui a été adapté à divers phénomènes caractérisés par des interactions locales de particules à deux états. L'exemple principal est le ferromagnétisme pour lequel le modèle d'Ising est un modèle sur réseau de moments magnétiques, dans lequel les particules sont toujours orientées suivant le même axe spatial et ne peuvent prendre que deux valeurs. Ce modèle est parfois appelé modèle de Lenz-Ising en référence aux physiciens Wilhelm Lenz et Ernst Ising.
Heun's methodIn mathematics and computational science, Heun's method may refer to the improved or modified Euler's method (that is, the explicit trapezoidal rule), or a similar two-stage Runge–Kutta method. It is named after Karl Heun and is a numerical procedure for solving ordinary differential equations (ODEs) with a given initial value. Both variants can be seen as extensions of the Euler method into two-stage second-order Runge–Kutta methods.