Morlet waveletIn mathematics, the Morlet wavelet (or Gabor wavelet) is a wavelet composed of a complex exponential (carrier) multiplied by a Gaussian window (envelope). This wavelet is closely related to human perception, both hearing and vision. Wavelet#History In 1946, physicist Dennis Gabor, applying ideas from quantum physics, introduced the use of Gaussian-windowed sinusoids for time-frequency decomposition, which he referred to as atoms, and which provide the best trade-off between spatial and frequency resolution.
Différence finieEn mathématiques, et plus précisément en analyse, une différence finie est une expression de la forme f(x + b) − f(x + a) (où f est une fonction numérique) ; la même expression divisée par b − a s'appelle un taux d'accroissement (ou taux de variation), et il est possible, plus généralement, de définir de même des différences divisées. L'approximation des dérivées par des différences finies joue un rôle central dans les méthodes des différences finies utilisées pour la résolution numérique des équations différentielles, tout particulièrement pour les problèmes de conditions aux limites.
Stochastic partial differential equationStochastic partial differential equations (SPDEs) generalize partial differential equations via random force terms and coefficients, in the same way ordinary stochastic differential equations generalize ordinary differential equations. They have relevance to quantum field theory, statistical mechanics, and spatial modeling. One of the most studied SPDEs is the stochastic heat equation, which may formally be written as where is the Laplacian and denotes space-time white noise.
Quadrature mirror filterIn digital signal processing, a quadrature mirror filter is a filter whose magnitude response is the mirror image around of that of another filter. Together these filters, first introduced by Croisier et al., are known as the quadrature mirror filter pair. A filter is the quadrature mirror filter of if . The filter responses are symmetric about : In audio/voice codecs, a quadrature mirror filter pair is often used to implement a filter bank that splits an input signal into two bands.
Numerical methods for partial differential equationsNumerical methods for partial differential equations is the branch of numerical analysis that studies the numerical solution of partial differential equations (PDEs). In principle, specialized methods for hyperbolic, parabolic or elliptic partial differential equations exist. Finite difference method In this method, functions are represented by their values at certain grid points and derivatives are approximated through differences in these values.
Équation différentielle linéaireUne équation différentielle linéaire est un cas particulier d'équation différentielle pour lequel on peut appliquer des procédés de superposition de solutions, et exploiter des résultats d'algèbre linéaire. De nombreuses équations différentielles de la physique vérifient la propriété de linéarité. De plus, les équations différentielles linéaires apparaissent naturellement en perturbant une équation différentielle (non linéaire) autour d'une de ses solutions.
Opérateur différentielEn mathématiques, et plus précisément en analyse, un opérateur différentiel est un opérateur agissant sur des fonctions différentiables. Lorsque la fonction est à une seule variable, l'opérateur différentiel est construit à partir des dérivées ordinaires. Lorsque la fonction est à plusieurs variables, l'opérateur différentiel est construit à partir des dérivées partielles. Un opérateur différentiel agissant sur deux fonctions est appelé opérateur bidifférentiel.
Numerical methods for ordinary differential equationsNumerical methods for ordinary differential equations are methods used to find numerical approximations to the solutions of ordinary differential equations (ODEs). Their use is also known as "numerical integration", although this term can also refer to the computation of integrals. Many differential equations cannot be solved exactly. For practical purposes, however – such as in engineering – a numeric approximation to the solution is often sufficient. The algorithms studied here can be used to compute such an approximation.
Géométrie complexeIn mathematics, complex geometry is the study of geometric structures and constructions arising out of, or described by, the complex numbers. In particular, complex geometry is concerned with the study of spaces such as complex manifolds and complex algebraic varieties, functions of several complex variables, and holomorphic constructions such as holomorphic vector bundles and coherent sheaves. Application of transcendental methods to algebraic geometry falls in this category, together with more geometric aspects of complex analysis.
First-order partial differential equationIn mathematics, a first-order partial differential equation is a partial differential equation that involves only first derivatives of the unknown function of n variables. The equation takes the form Such equations arise in the construction of characteristic surfaces for hyperbolic partial differential equations, in the calculus of variations, in some geometrical problems, and in simple models for gas dynamics whose solution involves the method of characteristics.