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Electropneumatic Oscillators Using Nonlinear Inflatables

Articolo
Data di Pubblicazione:
2025
Citazione:
Electropneumatic Oscillators Using Nonlinear Inflatables / E. De Smet, L. Migliorini, E. Milana, P. Milani, B. Gorissen. - In: ADVANCED INTELLIGENT SYSTEMS. - ISSN 2640-4567. - (2025), pp. 2400695.1-2400695.8. [Epub ahead of print] [10.1002/aisy.202400695]
Abstract:
Animals and robots employ central pattern generators, networks that invoke rhythmic patterns from constant inputs, to orchestrate limb movements during locomotion. Artificial central pattern generators (CPGs) can be either implemented in software or constructed in a physical domain. The former lacks embodiment, inhibiting direct interactions with the physical world. The latter is restricted by a complex translation of abstract functions to the physical domain, e.g., negative feedback, if-then behavior, etc. Here, self-oscillators, a rudimentary type of central pattern generators, that find ground in both the pneumatic and electrical domains are demonstrated. First, the hysteretic behavior of previously developed conical membranes is analyzed in deformation space. This state-space behavior is then transformed to the electrical domain by means of a stretchable strain sensor. Next, an analog comparator distinguishes between the two states and instructs a pneumatic solenoid valve to counteract the current state. As a result, a stable oscillation emerges, with a frequency that is dominated by the physical characteristic of the pneumatic circuit. As such, the proposed electropneumatic oscillator provides a promising platform for building complex CPGs that control interactive neuromorphic robots.
Tipologia IRIS:
01 - Articolo su periodico
Keywords:
central pattern generators; neuromorphic robots; oscillators; soft robotics;
Elenco autori:
E. De Smet, L. Migliorini, E. Milana, P. Milani, B. Gorissen
Autori di Ateneo:
MIGLIORINI LORENZO ( autore )
MILANI PAOLO ( autore )
Link alla scheda completa:
https://air.unimi.it/handle/2434/1148955
Link al Full Text:
https://air.unimi.it/retrieve/handle/2434/1148955/2686868/[24]%20Electropenumatic%20oscillators%20-%20AIS%20-%20De%20Smet%202025.pdf
Progetto:
MUSA - Multilayered Urban Sustainability Actiona
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