A Measure of Directional Outlyingness with Applications to Image Data and Video
Abstract
Functional data covers a wide range of data types. They all have in common that the observed objects are functions of of a univariate argument (e.g. time or wavelength) or a multivariate argument (say, a spatial position). These functions take on values which can in turn be univariate (such as the absorbance level) or multivariate (such as the red/green/blue color levels of an image). In practice it is important to be able to detect outliers in such data. For this purpose we introduce a new measure of outlyingness that we compute at each gridpoint of the functions' domain. The proposed Directional Outlyingness} (DO) measure accounts for skewness in the data and only requires O(n) computation time per direction. We derive the influence function of the DO and compute a cutoff for outlier detection. The resulting heatmap and functional outlier map reflect local and global outlyingness of a function. To illustrate the performance of the method on real data it is applied to spectra, MRI images, and video surveillance data.
Keywords
Cite
@article{arxiv.1608.05012,
title = {A Measure of Directional Outlyingness with Applications to Image Data and Video},
author = {Peter J. Rousseeuw and Jakob Raymaekers and Mia Hubert},
journal= {arXiv preprint arXiv:1608.05012},
year = {2021}
}