Harnessing vibrational resonance to identify and enhance input signals

Fuente: arXiv
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Hauptverfasser: Ashokkumar, P., Kabilan, R., Aravindh, M. Sathish, Venkatesan, A., Lakshmanan, M.
Format: Preprint
Veröffentlicht: 2023
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author Ashokkumar, P.
Kabilan, R.
Aravindh, M. Sathish
Venkatesan, A.
Lakshmanan, M.
author_facet Ashokkumar, P.
Kabilan, R.
Aravindh, M. Sathish
Venkatesan, A.
Lakshmanan, M.
contents We report the occurrence of vibrational resonance (VR) and the underlying mechanism in a simple piecewise linear electronic circuit, namely the Murali-Lakshmanan-Chua (MLC) circuit, driven by an additional biharmonic signal with widely different frequency. When the amplitude of the high-frequency force is tuned, the resultant vibrational resonance is used to detect the low-frequency signal and also to enhance it into a high-frequency signal. Further, we also show that even when the low-frequency signal is changed from sine wave to square and sawtooth waves, vibrational resonance can be used to detect and enhance them into high-frequency signals. These behaviors, confirmed by experimental results, are illustrated with appropriate analytical and numerical solutions of the corresponding circuit equations describing the system. Finally, we also verify the signal detection in the above circuit even with the addition of noise.
format Preprint
id arxiv_https___arxiv_org_abs_2401_00150
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Harnessing vibrational resonance to identify and enhance input signals
Ashokkumar, P.
Kabilan, R.
Aravindh, M. Sathish
Venkatesan, A.
Lakshmanan, M.
Adaptation and Self-Organizing Systems
Chaotic Dynamics
We report the occurrence of vibrational resonance (VR) and the underlying mechanism in a simple piecewise linear electronic circuit, namely the Murali-Lakshmanan-Chua (MLC) circuit, driven by an additional biharmonic signal with widely different frequency. When the amplitude of the high-frequency force is tuned, the resultant vibrational resonance is used to detect the low-frequency signal and also to enhance it into a high-frequency signal. Further, we also show that even when the low-frequency signal is changed from sine wave to square and sawtooth waves, vibrational resonance can be used to detect and enhance them into high-frequency signals. These behaviors, confirmed by experimental results, are illustrated with appropriate analytical and numerical solutions of the corresponding circuit equations describing the system. Finally, we also verify the signal detection in the above circuit even with the addition of noise.
title Harnessing vibrational resonance to identify and enhance input signals
topic Adaptation and Self-Organizing Systems
Chaotic Dynamics
url https://arxiv.org/abs/2401.00150