User activity recognition in smart homes using pattern clustering applied to temporal ANN algorithm

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Abstract

This paper discusses the possibility of recognizing and predicting user activities in the IoT (Internet of Things) based smart environment. The activity recognition is usually done through two steps: activity pattern clustering and activity type decision. Although many related works have been suggested, they had some limited performance because they focused only on one part between the two steps. This paper tries to find the best combination of a pattern clustering method and an activity decision algorithm among various existing works. For the first step, in order to classify so varied and complex user activities, we use a relevant and efficient unsupervised learning method called the K-pattern clustering algorithm. In the second step, the training of smart environment for recognizing and predicting user activities inside his/her personal space is done by utilizing the artificial neural network based on the Allen’s temporal relations. The experimental results show that our combined method provides the higher recognition accuracy for various activities, as compared with other data mining classification algorithms. Furthermore, it is more appropriate for a dynamic environment like an IoT based smart home.

Figures

  • Figure 1. User activity recognition in smart home [1].
  • Figure 2. Architecture of hybrid method.
  • Figure 3. Features of K-pattern algorithm.
  • Table 1. Sensor data representation [1].
  • Figure 5. Process of forming frequent activity patterns [1].
  • Figure 6. Process of forming clustering [1].
  • Figure 7. Process of recomputing new center [1].
  • Figure 8. Basic taxonomy of clustering algorithm.

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CITATION STYLE

APA

Bourobou, S. T. M., & Yoo, Y. (2015). User activity recognition in smart homes using pattern clustering applied to temporal ANN algorithm. Sensors (Switzerland), 15(5), 11953–11971. https://doi.org/10.3390/s150511953

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