2020
DOI: 10.1109/jxcdc.2020.3046558
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Noise Immunity of Oscillatory Computing Devices

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Cited by 5 publications
(4 citation statements)
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“…In a previous work [32], Csaba and Porod highlighted the ONN robustness to electronic noise and have shown that ONN can tolerate a smaller SNR compared to amplitudebased computing systems achieving the same functionality. We express the oscillator SNR as the ratio between the peakto-peak voltage amplitude over the thermal noise standard deviation:…”
Section: Onn Size and Noise Limitationmentioning
confidence: 99%
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“…In a previous work [32], Csaba and Porod highlighted the ONN robustness to electronic noise and have shown that ONN can tolerate a smaller SNR compared to amplitudebased computing systems achieving the same functionality. We express the oscillator SNR as the ratio between the peakto-peak voltage amplitude over the thermal noise standard deviation:…”
Section: Onn Size and Noise Limitationmentioning
confidence: 99%
“…9 shows the maximum fully-connected ONN size N max with respect to the oscillation frequency for various amplitudes. We consider SNR=3.5 as minimum achievable SNR that has been reported [32] in the case of two coupled-ring oscillators. With ∆V max =21 mV, we observe that the synaptic thermal noise limits the number of oscillators to N max =300 for f osc =10 MHz.…”
Section: Onn Size and Noise Limitationmentioning
confidence: 99%
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“…( Bottom ) If phases correspond to pixels of a grayscale image, the phase dynamics may be used to converge to predefined patterns (Csaba et al, 2016 ). The illustrations of convergence to ‘A' are taken from Csaba and Porod ( 2020b ).…”
Section: Methodsmentioning
confidence: 99%