A Note on Noisy Reservoir Computation
In this note we extend the definition of the Information Processing Capacity (IPC) by Dambre et al [1] to include the effects of stochastic reservoir dynamics. We quantify the degradation of the IPC in the presence of this noise. [1] Dambre et al. Scientific Reports 2, 514, (2012)
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Format | Journal Article |
Language | English |
Published |
21.02.2023
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Abstract | In this note we extend the definition of the Information Processing Capacity
(IPC) by Dambre et al [1] to include the effects of stochastic reservoir
dynamics. We quantify the degradation of the IPC in the presence of this noise.
[1] Dambre et al. Scientific Reports 2, 514, (2012) |
---|---|
AbstractList | In this note we extend the definition of the Information Processing Capacity
(IPC) by Dambre et al [1] to include the effects of stochastic reservoir
dynamics. We quantify the degradation of the IPC in the presence of this noise.
[1] Dambre et al. Scientific Reports 2, 514, (2012) |
Author | Polloreno, Anthony M Tezak, Nikolas A Wang, Reuben R. W |
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BackLink | https://doi.org/10.48550/arXiv.2302.10862$$DView paper in arXiv |
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Snippet | In this note we extend the definition of the Information Processing Capacity
(IPC) by Dambre et al [1] to include the effects of stochastic reservoir
dynamics.... |
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SubjectTerms | Computer Science - Information Theory Computer Science - Learning Mathematics - Information Theory |
Title | A Note on Noisy Reservoir Computation |
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