Console de mixagethumb|Console API 48 canaux dans un studio d'enregistrement. Une console de mixage est un appareil de traitement du signal audio se présentant sous la forme d'une console sur la face supérieure de laquelle sont disposés des organes de contrôle, servant à mélanger, dans des proportions déterminées par l'opérateur, plusieurs vers plusieurs . On en trouve dans la plupart des applications audio professionnelles (par ordre chronologique d'apparition) : radiodiffusion, cinéma sonore (souvent en prise de son et toujours en postproduction) sonorisation, enregistrement musical et télévision.
All-pass filterAn all-pass filter is a signal processing filter that passes all frequencies equally in gain, but changes the phase relationship among various frequencies. Most types of filter reduce the amplitude (i.e. the magnitude) of the signal applied to it for some values of frequency, whereas the all-pass filter allows all frequencies through without changes in level. A common application in electronic music production is in the design of an effects unit known as a "phaser", where a number of all-pass filters are connected in sequence and the output mixed with the raw signal.
Audio mixing (recorded music)In sound recording and reproduction, audio mixing is the process of optimizing and combining multitrack recordings into a final mono, stereo or surround sound product. In the process of combining the separate tracks, their relative levels are adjusted and balanced and various processes such as equalization and compression are commonly applied to individual tracks, groups of tracks, and the overall mix. In stereo and surround sound mixing, the placement of the tracks within the stereo (or surround) field are adjusted and balanced.
Matched filterIn signal processing, a matched filter is obtained by correlating a known delayed signal, or template, with an unknown signal to detect the presence of the template in the unknown signal. This is equivalent to convolving the unknown signal with a conjugated time-reversed version of the template. The matched filter is the optimal linear filter for maximizing the signal-to-noise ratio (SNR) in the presence of additive stochastic noise.
Filtre (photographie)thumb|Porte-filtres monté sur une optique Nikkor Les filtres utilisés en photographie ou en cinématographie permettent d'ajuster la température de couleur, de compenser l'exposition, de créer des effets optiques simples. Depuis l'avènement de la prise de vues numérique, l'usage de filtres optiques a souvent laissé place à l'application de filtres virtuels à l'aide de logiciels de et de . Une multitude de matériaux permettent la fabrication de filtres : verre, résine, gélatine, acétate de cellulose, polyester, polycarbonate, etc.
Optimisation convexevignette|320x320px|Optimisation convexe dans un espace en deux dimensions dans un espace contraint L'optimisation convexe est une sous-discipline de l'optimisation mathématique, dans laquelle le critère à minimiser est convexe et l'ensemble admissible est convexe. Ces problèmes sont plus simples à analyser et à résoudre que les problèmes d'optimisation non convexes, bien qu'ils puissent être NP-difficile (c'est le cas de l'optimisation copositive). La théorie permettant d'analyser ces problèmes ne requiert pas la différentiabilité des fonctions.
Time–frequency analysisIn signal processing, time–frequency analysis comprises those techniques that study a signal in both the time and frequency domains simultaneously, using various time–frequency representations. Rather than viewing a 1-dimensional signal (a function, real or complex-valued, whose domain is the real line) and some transform (another function whose domain is the real line, obtained from the original via some transform), time–frequency analysis studies a two-dimensional signal – a function whose domain is the two-dimensional real plane, obtained from the signal via a time–frequency transform.
K-moyennesLe partitionnement en k-moyennes (ou k-means en anglais) est une méthode de partitionnement de données et un problème d'optimisation combinatoire. Étant donnés des points et un entier k, le problème est de diviser les points en k groupes, souvent appelés clusters, de façon à minimiser une certaine fonction. On considère la distance d'un point à la moyenne des points de son cluster ; la fonction à minimiser est la somme des carrés de ces distances.
Time–frequency representationA time–frequency representation (TFR) is a view of a signal (taken to be a function of time) represented over both time and frequency. Time–frequency analysis means analysis into the time–frequency domain provided by a TFR. This is achieved by using a formulation often called "Time–Frequency Distribution", abbreviated as TFD. TFRs are often complex-valued fields over time and frequency, where the modulus of the field represents either amplitude or "energy density" (the concentration of the root mean square over time and frequency), and the argument of the field represents phase.
Single-linkage clusteringIn statistics, single-linkage clustering is one of several methods of hierarchical clustering. It is based on grouping clusters in bottom-up fashion (agglomerative clustering), at each step combining two clusters that contain the closest pair of elements not yet belonging to the same cluster as each other. This method tends to produce long thin clusters in which nearby elements of the same cluster have small distances, but elements at opposite ends of a cluster may be much farther from each other than two elements of other clusters.