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  4. Adaptation of cluster analysis methods to optimize a biomechanical motion model of humans in a nursing bed
 
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2020
Conference Paper
Title

Adaptation of cluster analysis methods to optimize a biomechanical motion model of humans in a nursing bed

Abstract
The paper considers the optimization of a Hidden-Markov Model (HMM) based method for the generation of averaged motion sequences. To create averaged motion sequences, motion sequences of different test persons were originally recorded with a motion capture system (MoCap system) and then averaged using an HMM approach. The resulting averaged data sets, however, partly showed serious motion artifacts and uncoordinated intermediate movements, especially in the extremities. The aim of this work was to combine only movements with similar courses in the extremities by a suitable cluster analysis. For each test person, model body descriptions of 21 body elements are available, each of which is represented in three-dimensional time series. For optimization, the MoCap data are first compared using time warp edit distance (TWED) and clustered using an agglomerative hierarchical procedure. Finally, the data of the resulting clusters are used to generate new averaged motion sequences using the HMM approach. The resulting averaged data can be used, for example, in a simulation in a multilevel biomechanical model.
Author(s)
Demmer, Julia
Hochschule Niederrhein, Krefeld
Kitzig, Andreas
Hochschule Niederrhein, Krefeld
Stockmanns, Gudrun
Hochschule Niederrhein, Krefeld
Naroska, Edwin
Hochschule Niederrhein, Krefeld
Viga, Reinhard
Uni DuE / EBS
Grabmaier, Anton  
Fraunhofer-Institut für Mikroelektronische Schaltungen und Systeme IMS  
Mainwork
28th European Signal Processing Conference, EUSIPCO 2020. Proceedings  
Conference
European Signal Processing Conference (EUSIPCO) 2020  
European Signal Processing Conference (EUSIPCO) 2021  
Open Access
Link
Link
DOI
10.23919/Eusipco47968.2020.9287503
Additional full text version
Landing Page
Language
English
Fraunhofer-Institut für Mikroelektronische Schaltungen und Systeme IMS  
Keyword(s)
  • cluster analysis

  • model driven development

  • biomechanical motion model

  • averaging motion pattern

  • time warp edit distance (TWED)

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