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Active learning for electrodermal activity classification

Author(s)
Xia, Victoria F.; Jaques, Natasha Mary; Taylor, Sara Ann; Fedor, Szymon; Picard, Rosalind W.
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Abstract
To filter noise or detect features within physiological signals, it is often effective to encode expert knowledge into a model such as a machine learning classifier. However, training such a model can require much effort on the part of the researcher; this often takes the form of manually labeling portions of signal needed to represent the concept being trained. Active learning is a technique for reducing human effort by developing a classifier that can intelligently select the most relevant data samples and ask for labels for only those samples, in an iterative process. In this paper we demonstrate that active learning can reduce the labeling effort required of researchers by as much as 84% for our application, while offering equivalent or even slightly improved machine learning performance.
Date issued
2016-02
URI
http://hdl.handle.net/1721.1/109392
Department
Massachusetts Institute of Technology. Media Laboratory. Affective Computing Group; Massachusetts Institute of Technology. Department of Electrical Engineering and Computer Science; Massachusetts Institute of Technology. Media Laboratory; Program in Media Arts and Sciences (Massachusetts Institute of Technology)
Journal
2015 IEEE Signal Processing in Medicine and Biology Symposium (SPMB)
Publisher
Institute of Electrical and Electronics Engineers (IEEE)
Citation
Xia, Victoria, Natasha Jaques, Sara Taylor, Szymon Fedor, and Rosalind Picard. “Active Learning for Electrodermal Activity Classification.” 2015 IEEE Signal Processing in Medicine and Biology Symposium (SPMB) (December 2015).
Version: Author's final manuscript
ISBN
978-1-5090-1350-0

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