extrapolation of time-series - translation to ρωσικά
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extrapolation of time-series - translation to ρωσικά

SET OF DATA INDEXED IN TIME ORDER
Time series analysis; Time series prediction; Time-series analysis; Time-series; Time Series; Time Series Analysis; Multivariate time series; Univariate time series; Time-series data; Time-series regression; Analysis of Time Series; Time sequence; Time series econometrics; Timeseries; Time series models; Time series algorithms; Time Series Forecasting; Time-series analytics; Time series regression
  • right
  • Tuberculosis incidence US 1953-2009

extrapolation of time-series      
экстраполяция временных рядов
multivariate time series         
многомерный временной ряд
time sequence         
временная последовательность, последовательность во времени

Ορισμός

дрифт
муж., мор. конец борта при окончании шканец, юта и бака.
| Разность между толщиной болта и размером дыры или гнезда его: простор, зазор.

Βικιπαίδεια

Time series

In mathematics, a time series is a series of data points indexed (or listed or graphed) in time order. Most commonly, a time series is a sequence taken at successive equally spaced points in time. Thus it is a sequence of discrete-time data. Examples of time series are heights of ocean tides, counts of sunspots, and the daily closing value of the Dow Jones Industrial Average.

A time series is very frequently plotted via a run chart (which is a temporal line chart). Time series are used in statistics, signal processing, pattern recognition, econometrics, mathematical finance, weather forecasting, earthquake prediction, electroencephalography, control engineering, astronomy, communications engineering, and largely in any domain of applied science and engineering which involves temporal measurements.

Time series analysis comprises methods for analyzing time series data in order to extract meaningful statistics and other characteristics of the data. Time series forecasting is the use of a model to predict future values based on previously observed values. While regression analysis is often employed in such a way as to test relationships between one or more different time series, this type of analysis is not usually called "time series analysis", which refers in particular to relationships between different points in time within a single series.

Time series data have a natural temporal ordering. This makes time series analysis distinct from cross-sectional studies, in which there is no natural ordering of the observations (e.g. explaining people's wages by reference to their respective education levels, where the individuals' data could be entered in any order). Time series analysis is also distinct from spatial data analysis where the observations typically relate to geographical locations (e.g. accounting for house prices by the location as well as the intrinsic characteristics of the houses). A stochastic model for a time series will generally reflect the fact that observations close together in time will be more closely related than observations further apart. In addition, time series models will often make use of the natural one-way ordering of time so that values for a given period will be expressed as deriving in some way from past values, rather than from future values (see time reversibility).

Time series analysis can be applied to real-valued, continuous data, discrete numeric data, or discrete symbolic data (i.e. sequences of characters, such as letters and words in the English language).

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