Reservoir Computing Using Autonomous Boolean Networks Realized on Field-Programmable Gate Arrays

Stefan Apostel, Nicholas D. Haynes, Eckehard Schöll, Otti D'Huys, Daniel J. Gauthier. Reservoir Computing Using Autonomous Boolean Networks Realized on Field-Programmable Gate Arrays. In Kohei Nakajima, Ingo Fischer, editors, Reservoir Computing - Theory, Physical Implementations, and Applications. Natural Computing Series, pages 239-271, Springer, 2021. [doi]

@incollection{ApostelHSDG21,
  title = {Reservoir Computing Using Autonomous Boolean Networks Realized on Field-Programmable Gate Arrays},
  author = {Stefan Apostel and Nicholas D. Haynes and Eckehard Schöll and Otti D'Huys and Daniel J. Gauthier},
  year = {2021},
  doi = {10.1007/978-981-13-1687-6_11},
  url = {https://doi.org/10.1007/978-981-13-1687-6_11},
  researchr = {https://researchr.org/publication/ApostelHSDG21},
  cites = {0},
  citedby = {0},
  pages = {239-271},
  booktitle = {Reservoir Computing - Theory, Physical Implementations, and Applications},
  editor = {Kohei Nakajima and Ingo Fischer},
  series = {Natural Computing Series},
  publisher = {Springer},
  isbn = {978-981-13-1687-6},
}