Motion control of biomimetic swimming robots / by Junzhi Yu, Min Tan
By: Yu, Junzhi, autor
Contributor(s): Tan, Min, autor
Series: (Research on Intelligent Manufacturing, 2523-3386); (Intelligent Technologies and Robotics (Springer-42732)).Publisher: Singapore : Springer Singapore : Imprint: Springer, 2020Edition: First edition.Description: 1 recurso en línea (VIII, 203 páginas) : 121 ilustraciones, 103 ilustraciones a color.ISBN: 9789811387715.Subject: Robots -- Movimiento | Cinemática
| Item type | Current library | Collection | Call number | Status | Date due | Barcode | Item holds | |
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Madrid Digital Acceso Electrónico (UEM) | Ciencias e Ingeniería | TJ211.4 2020 EB (Browse shelf(Opens below)) | Acceso electrónico | eBook07112098 |
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| TJ211.4 2019 EB Biomechanics of anthropomorphic systems | TJ211.4 2019 EB 3D Motion of Rigid Bodies : A Foundation for Robot Dynamics Analysis | TJ211.4 2019 EB Advances in robot kinematics 2018 | TJ211.4 2020 EB Motion control of biomimetic swimming robots | TJ211.4 2021 EB Novel Bioinspired Actuator Designs for Robotics | TJ211.4 2022 EB Robot Dynamic Manipulation : Perception of Deformable Objects and Nonprehensile Manipulation Control | TJ211.4 2024 EB Omnidirectional Tilt-Rotor Flying Robots for Aerial Physical Interaction : Modelling, Control, Design and Experiments |
Introduction -- Bio-inspired Fish Body Wave Model Considering Linear Density -- Motion Control of Fishlike Swimming in 2D -- CPG-based Swimming Control -- 3D Maneuvering Control of Robotic Fish -- Control of Yaw and Pitch Maneuvers of Robotic Dolphin -- Leaping Control of Self-propelled Robotic Dolphin -- Motion Control of Self-propelled Robotic Jellyfish -- Summary and Outlook.
This book reports on the latest advances in the study of motion control in biomimetic swimming robots with high speed and high manoeuvrability. It presents state-of-the-art studies on various swimming robots including robotic fish, dolphins and jellyfish in a unified framework, and discusses the potential benefits of applying biomimetic underwater propulsion to autonomous underwater vehicle design, such as: speed, energy economy, enhanced manoeuvrability, and reduced detectability. Given its scope, the book will be of interest to researchers, engineers and graduate students in robotics and ocean engineering who wish to learn about the core principles, methods, algorithms, and applications of biomimetic underwater robots. .
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