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Hydrodynamic performance analysis of a biomimetic manta ray underwater glider.

, , and . ROBIO, page 1631-1636. IEEE, (2016)

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A path planning strategy for marine vehicles based on deep reinforcement learning and data-driven dynamic flow fields prediction., , , and . CACRE, page 466-471. IEEE, (2021)Path Planning Method of Underwater Glider Based on Energy Consumption Model in Current Environment., , and . ICIRA (1), volume 8917 of Lecture Notes in Computer Science, page 142-152. Springer, (2014)Optimal Sensors Deployment for Tracking Level Curve Based on Posterior Cramér-Rao Lower Bound in Scalar Field., , , and . ICIRA (1), volume 8917 of Lecture Notes in Computer Science, page 129-141. Springer, (2014)Underwater acoustic intensity field reconstruction by kriged compressive sensing., , , , and . WUWNet, page 5:1-5:8. ACM, (2018)Hydrodynamic performance analysis of a biomimetic manta ray underwater glider., , and . ROBIO, page 1631-1636. IEEE, (2016)Design of a wheel-propeller-leg integrated amphibious robot., , , and . ICARCV, page 1815-1819. IEEE, (2010)Optimal distribution of propulsion for an amphibious robot based on wheel-propeller-leg mixed thrusters., , , and . ICARCV, page 822-826. IEEE, (2010)Marine Observation Network based on Underwater Vehicles., , , and . WUWNet, page 47:1-47:2. ACM, (2014)Time Series Prediction Methods for Depth-Averaged Current Velocities of Underwater Gliders., , and . IEEE Access, (2017)Research on the Trajectory Prediction of a Twin Screw AUV Based on an Accurate Dynamic Model., , , and . CACRE, page 567-572. IEEE, (2021)