Online personalization of cross-subjects based activity recognition models on wearable devices


Sztyler, Timo ; Stuckenschmidt, Heiner



DOI: https://doi.org/10.1109/PERCOM.2017.7917864
URL: http://ieeexplore.ieee.org/document/7917864/
Weitere URL: http://publications.wim.uni-mannheim.de/informatik...
Dokumenttyp: Konferenzveröffentlichung
Erscheinungsjahr: 2017
Buchtitel: PerCom 2017 : The Fifteenth Annual IEEE International Conference on Pervasive Computing and Communications : March 13-17, 2017, Big Island, HI, USA
Seitenbereich: 180-189
Veranstaltungstitel: IEEE International Conference on Pervasive Computing and Communications 2017 (PerCom)
Veranstaltungsort: Kona, Big Island, HI
Veranstaltungsdatum: 13.-17.03.2017
Herausgeber: Marchiori, Alan
Ort der Veröffentlichung: Piscataway, NJ
Verlag: IEEE Computer Society
ISBN: 978-1-5090-4328-6 , 978-1-5090-4327-9
ISSN: 2474-249X
Sprache der Veröffentlichung: Englisch
Einrichtung: Fakultät für Wirtschaftsinformatik und Wirtschaftsmathematik > Practical Computer Science II: Artificial Intelligence (Stuckenschmidt 2009-)
Fachgebiet: 004 Informatik
Abstract: Human activity recognition using wearable devices is an active area of research in pervasive computing. In our work, we address the problem of reducing the effort for training and adapting activity recognition approaches to a specific person. We focus on the problem of cross-subjects based recognition models and introduce an approach that considers physical characteristics. Further, to adapt such a model to the behavior of a new user, we present a personalization approach that relies on online and active machine learning. In this context, we use online random forest as a classifier to continuously adapt the model without keeping the already seen data available and an active learning approach that uses user-feedback for adapting the model while minimizing the effort for the new user. We test our approaches on a real world data set that covers 15 participants, 8 common activities, and 7 different on-body device positions. We show that our cross-subjects based approach performs constantly +3% better than the standard approach. Further, the personalized cross-subjects models, gained through user-feedback, recognize dynamic activities with an F-measure of 87% where the user has significantly less effort than collecting and labeling data.




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