A flat neural network architecture to represent movement primitives with integrated sequencing

Lemme A, Steil JJ (2015)
Presented at the European Symposium on Artificial Neural Networks, Brügge.

Konferenzbeitrag | Veröffentlicht | Englisch
 
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Erscheinungsjahr
2015
Seite(n)
481-486
Konferenz
European Symposium on Artificial Neural Networks
Konferenzort
Brügge
Page URI
https://pub.uni-bielefeld.de/record/2760762

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Lemme A, Steil JJ. A flat neural network architecture to represent movement primitives with integrated sequencing. Presented at the European Symposium on Artificial Neural Networks, Brügge.
Lemme, A., & Steil, J. J. (2015). A flat neural network architecture to represent movement primitives with integrated sequencing. Presented at the European Symposium on Artificial Neural Networks, Brügge
Lemme, Andre, and Steil, Jochen J. 2015. “A flat neural network architecture to represent movement primitives with integrated sequencing”. Presented at the European Symposium on Artificial Neural Networks, Brügge , 481-486. de Facto.
Lemme, A., and Steil, J. J. (2015).“A flat neural network architecture to represent movement primitives with integrated sequencing”. Presented at the European Symposium on Artificial Neural Networks, Brügge.
Lemme, A., & Steil, J.J., 2015. A flat neural network architecture to represent movement primitives with integrated sequencing. Presented at the European Symposium on Artificial Neural Networks, Brügge.
A. Lemme and J.J. Steil, “A flat neural network architecture to represent movement primitives with integrated sequencing”, Presented at the European Symposium on Artificial Neural Networks, Brügge, de Facto, 2015.
Lemme, A., Steil, J.J.: A flat neural network architecture to represent movement primitives with integrated sequencing. Presented at the European Symposium on Artificial Neural Networks, Brügge (2015).
Lemme, Andre, and Steil, Jochen J. “A flat neural network architecture to represent movement primitives with integrated sequencing”. Presented at the European Symposium on Artificial Neural Networks, Brügge, de Facto, 2015.
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