Transformée de WalshEn mathématiques, et plus précisément en analyse harmonique, la transformée de Walsh est l'analogue de la transformée de Fourier discrète. Elle opère sur un corps fini à la place des nombres complexes. Elle est utilisée en théorie de l'information à la fois pour les codes linéaires et la cryptographie. Analyse harmonique sur un groupe abélien fini Le contexte est identique à celui de l'analyse harmonique classique d'un groupe abélien fini.
Discrete time and continuous timeIn mathematical dynamics, discrete time and continuous time are two alternative frameworks within which variables that evolve over time are modeled. Discrete time views values of variables as occurring at distinct, separate "points in time", or equivalently as being unchanged throughout each non-zero region of time ("time period")—that is, time is viewed as a discrete variable. Thus a non-time variable jumps from one value to another as time moves from one time period to the next.
Efficacité (statistiques)En statistique, lefficacité est une mesure de la qualité d'un estimateur, d'une expérimentation ou d'un test statistique. Elle permet d'évaluer le nombre d'observations nécessaires pour atteindre un seuil : plus un estimateur est efficace, plus l'échantillon d'observations nécessaire pour atteindre un objectif de précision sera petit. Lefficacité relative de deux procédures est le rapport de leurs efficacités, bien que le concept soit plus utilisé pour le rapport de l'efficacité d'une procédure donnée et d'une procédure théorique optimale.
Interpolation polynomialeEn mathématiques, en analyse numérique, l'interpolation polynomiale est une technique d'interpolation d'un ensemble de données ou d'une fonction par un polynôme. En d'autres termes, étant donné un ensemble de points (obtenu, par exemple, à la suite d'une expérience), on cherche un polynôme qui passe par tous ces points, p(xi) = yi, et éventuellement vérifie d'autres conditions, de degré si possible le plus bas. Cependant, dans le cas de l'interpolation lagrangienne, par exemple, le choix des points d'interpolation est critique.
Fractional Fourier transformIn mathematics, in the area of harmonic analysis, the fractional Fourier transform (FRFT) is a family of linear transformations generalizing the Fourier transform. It can be thought of as the Fourier transform to the n-th power, where n need not be an integer — thus, it can transform a function to any intermediate domain between time and frequency. Its applications range from filter design and signal analysis to phase retrieval and pattern recognition.
Cluster samplingIn statistics, cluster sampling is a sampling plan used when mutually homogeneous yet internally heterogeneous groupings are evident in a statistical population. It is often used in marketing research. In this sampling plan, the total population is divided into these groups (known as clusters) and a simple random sample of the groups is selected. The elements in each cluster are then sampled. If all elements in each sampled cluster are sampled, then this is referred to as a "one-stage" cluster sampling plan.
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.
Sampling frameIn statistics, a sampling frame is the source material or device from which a sample is drawn. It is a list of all those within a population who can be sampled, and may include individuals, households or institutions. Importance of the sampling frame is stressed by Jessen and Salant and Dillman. In many practical situations the frame is a matter of choice to the survey planner, and sometimes a critical one. [...] Some very worthwhile investigations are not undertaken at all because of the lack of an apparent frame; others, because of faulty frames, have ended in a disaster or in cloud of doubt.
Convenience samplingConvenience sampling (also known as grab sampling, accidental sampling, or opportunity sampling) is a type of non-probability sampling that involves the sample being drawn from that part of the population that is close to hand. This type of sampling is most useful for pilot testing. Convenience sampling is not often recommended for research due to the possibility of sampling error and lack of representation of the population. But it can be handy depending on the situation. In some situations, convenience sampling is the only possible option.
Nyquist rateIn signal processing, the Nyquist rate, named after Harry Nyquist, is a value (in units of samples per second or hertz, Hz) equal to twice the highest frequency (bandwidth) of a given function or signal. When the function is digitized at a higher sample rate (see ), the resulting discrete-time sequence is said to be free of the distortion known as aliasing. Conversely, for a given sample-rate the corresponding Nyquist frequency in Hz is one-half the sample-rate.