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Bionic Gliding Underwater Robots - Design, Control, and Implementation (Hardcover): Junzhi Yu, Zhengxing Wu, Jian Wang, Min Tan Bionic Gliding Underwater Robots - Design, Control, and Implementation (Hardcover)
Junzhi Yu, Zhengxing Wu, Jian Wang, Min Tan
R2,422 Discovery Miles 24 220 Ships in 12 - 17 working days

Underwater robots play a significant role in ocean exploration. This book provides full coverage of the theoretical and practical aspects of bionic gliding underwater robots, including system design, modeling control, and motion planning. To overcome the inherent shortcomings of traditional underwater robots that can simultaneously lack maneuverability and endurance, a new type of robot, the bionic gliding underwater robot, has attracted much attention from scientists and engineers. On the one hand, by imitating the appearance and swimming mechanisms of natural creatures, bionic gliding underwater robots achieve high maneuverability, swimming efficiency, and strong concealment. On the other hand, borrowing from the buoyancy adjustment systems of underwater gliders, bionic gliding underwater robots can obtain strong endurance, which is significant in practical applications. Taking gliding robotic dolphin and fish as examples, the designed prototypes and proposed methods are discussed, offering valuable insights into the development of next-generation underwater robots that are well suited for various oceanic applications. This book will be of great interest to students and professionals alike in the field of robotics or intelligent control. It will also be a great reference for engineers or technicians who deal with the development of underwater robots.

Bionic Gliding Underwater Robots - Design, Control, and Implementation (Paperback): Junzhi Yu, Zhengxing Wu, Jian Wang, Min Tan Bionic Gliding Underwater Robots - Design, Control, and Implementation (Paperback)
Junzhi Yu, Zhengxing Wu, Jian Wang, Min Tan
R1,422 Discovery Miles 14 220 Ships in 12 - 17 working days

Underwater robots play a significant role in ocean exploration. This book provides full coverage of the theoretical and practical aspects of bionic gliding underwater robots, including system design, modeling control, and motion planning. To overcome the inherent shortcomings of traditional underwater robots that can simultaneously lack maneuverability and endurance, a new type of robot, the bionic gliding underwater robot, has attracted much attention from scientists and engineers. On the one hand, by imitating the appearance and swimming mechanisms of natural creatures, bionic gliding underwater robots achieve high maneuverability, swimming efficiency, and strong concealment. On the other hand, borrowing from the buoyancy adjustment systems of underwater gliders, bionic gliding underwater robots can obtain strong endurance, which is significant in practical applications. Taking gliding robotic dolphin and fish as examples, the designed prototypes and proposed methods are discussed, offering valuable insights into the development of next-generation underwater robots that are well suited for various oceanic applications. This book will be of great interest to students and professionals alike in the field of robotics or intelligent control. It will also be a great reference for engineers or technicians who deal with the development of underwater robots.

Motion Control of Biomimetic Swimming Robots (Paperback, 1st ed. 2020): Junzhi Yu, Min Tan Motion Control of Biomimetic Swimming Robots (Paperback, 1st ed. 2020)
Junzhi Yu, Min Tan
R2,957 Discovery Miles 29 570 Ships in 10 - 15 working days

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.

Motion Control of Biomimetic Swimming Robots (Hardcover, 1st ed. 2020): Junzhi Yu, Min Tan Motion Control of Biomimetic Swimming Robots (Hardcover, 1st ed. 2020)
Junzhi Yu, Min Tan
R4,238 Discovery Miles 42 380 Ships in 10 - 15 working days

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.

Underwater Biomimetic Vehicle-Manipulator System - Control and Planning (1st ed. 2023): Shuo Wang, Yu Wang, Min Tan, Rui Wang,... Underwater Biomimetic Vehicle-Manipulator System - Control and Planning (1st ed. 2023)
Shuo Wang, Yu Wang, Min Tan, Rui Wang, Xiang Dong, …
R4,161 R3,431 Discovery Miles 34 310 Save R730 (18%) Ships in 12 - 17 working days

This book is about the design and control of biomimetic underwater robots.Ā It explains the six aspects of theĀ underwater biomimeticĀ vehicle- manipulator system in detail and provides practical examples.Ā This book is the authorsā€™ long-term exploration of the theoretical and technical issues in the development of theĀ underwater biomimetic vehicle-manipulator system and is written based on more than 15 years of scientific research and practical experience. This book is a helpful reference for the researchers, engineers, master and Ph.D. students in the field of biomimetic underwater robots.

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