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A note on using the F-measure for evaluating record linkage algorithms

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Title: A note on using the F-measure for evaluating record linkage algorithms
Authors: Hand, DJ
Christen, P
Item Type: Journal Article
Abstract: Record linkage is the process of identifying and linking records about the same entities from one or more databases. Record linkage can be viewed as a classification problem where the aim is to decide whether a pair of records is a match (i.e. two records refer to the same real-world entity) or a non-match (two records refer to two different entities). Various classification techniques—including supervised, unsupervised, semi-supervised and active learning based—have been employed for record linkage. If ground truth data in the form of known true matches and non-matches are available, the quality of classified links can be evaluated. Due to the generally high class imbalance in record linkage problems, standard accuracy or misclassification rate are not meaningful for assessing the quality of a set of linked records. Instead, precision and recall, as commonly used in information retrieval and machine learning, are used. These are often combined into the popular F-measure, which is the harmonic mean of precision and recall. We show that the F-measure can also be expressed as a weighted sum of precision and recall, with weights which depend on the linkage method being used. This reformulation reveals that the F-measure has a major conceptual weakness: the relative importance assigned to precision and recall should be an aspect of the problem and the researcher or user, but not of the particular linkage method being used. We suggest alternative measures which do not suffer from this fundamental flaw.
Issue Date: 19-Apr-2017
Date of Acceptance: 2-Apr-2017
URI: http://hdl.handle.net/10044/1/46235
DOI: https://dx.doi.org/10.1007/s11222-017-9746-6
ISSN: 0960-3174
Publisher: Springer
Start Page: 539
End Page: 547
Journal / Book Title: Statistics and Computing
Volume: 28
Issue: 3
Copyright Statement: © Springer Science+Business Media New York 2017. The final publication is available at Springer via https://dx.doi.org/10.1007/s11222-017-9746-6
Keywords: 0104 Statistics
0802 Computation Theory And Mathematics
Statistics & Probability
Publication Status: Published
Appears in Collections:Mathematics
Faculty of Natural Sciences