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  4. Functional Data Analysis
 
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Functional Data Analysis

Journal
Annual Review of Statistics and Its Application
Journal Volume
3
Journal Issue
1
Start Page
257-295
ISSN
2326-8298
2326-831X
Date Issued
2016-06-01
Author(s)
Jane-Ling Wang
Jeng-Min Chiou  
Hans-Georg Müller
DOI
10.1146/annurev-statistics-041715-033624
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/720574
Abstract
With the advance of modern technology, more and more data are being recorded continuously during a time interval or intermittently at several discrete time points. These are both examples of functional data, which has become a commonly encountered type of data. Functional data analysis (FDA) encompasses the statistical methodology for such data. Broadly interpreted, FDA deals with the analysis and theory of data that are in the form of functions. This paper provides an overview of FDA, starting with simple statistical notions such as mean and covariance functions, then covering some core techniques, the most popular of which is functional principal component analysis (FPCA). FPCA is an important dimension reduction tool, and in sparse data situations it can be used to impute functional data that are sparsely observed. Other dimension reduction approaches are also discussed. In addition, we review another core technique, functional linear regression, as well as clustering and classification of functional data. Beyond linear and single- or multiple- index methods, we touch upon a few nonlinear approaches that are promising for certain applications. They include additive and other nonlinear functional regression models and models that feature time warping, manifold learning, and empirical differential equations. The paper concludes with a brief discussion of future directions.
Subjects
Clustering and classification
Functional additive model
Functional correlation
Functional linear regression
Functional principal component analysis
Time warping
Publisher
Annual Reviews
Type
journal article

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