COSTA, DANIELE
COSTA, DANIELE
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A NOVEL CLASS OF BIO-INSPIRED UNDERWATER ROBOTS
2022-01-01 Costa, D.
BCF swimming locomotion for autonomous underwater robots: a review and a novel solution to improve control and efficiency
2017-01-01 Scaradozzi, David; Palmieri, Giacomo; Costa, Daniele; Pinelli, Antonio
Design of a Labriform-Steering Underwater Robot Using a Multiphysics Simulation Environment
2022-01-01 Costa, D.; Scoccia, C.; Palpacelli, M.; Callegari, M.; Scaradozzi, D.
Experimental Validation of a Bio-Inspired Thruster
2021-01-01 Costa, D.; Palmieri, G.; Scaradozzi, D.; Callegari, M.
Reconfigurability analysis of a class of parallel kinematics machines
2019-01-01 Carbonari, L.; Costa, D.; Palmieri, G.; Palpacelli, M.
| Titolo | Data di pubblicazione | Autore(i) | File |
|---|---|---|---|
| A NOVEL CLASS OF BIO-INSPIRED UNDERWATER ROBOTS | 1-gen-2022 | Costa, D. | |
| BCF swimming locomotion for autonomous underwater robots: a review and a novel solution to improve control and efficiency | 1-gen-2017 | Scaradozzi, David; Palmieri, Giacomo; Costa, Daniele; Pinelli, Antonio | |
| Design of a Labriform-Steering Underwater Robot Using a Multiphysics Simulation Environment | 1-gen-2022 | Costa, D.; Scoccia, C.; Palpacelli, M.; Callegari, M.; Scaradozzi, D. | |
| Experimental Validation of a Bio-Inspired Thruster | 1-gen-2021 | Costa, D.; Palmieri, G.; Scaradozzi, D.; Callegari, M. | |
| Reconfigurability analysis of a class of parallel kinematics machines | 1-gen-2019 | Carbonari, L.; Costa, D.; Palmieri, G.; Palpacelli, M. |