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Design, Modeling and Experiments of 3-DOF Electromagnetic Spherical Actuators (Hardcover, Edition.): Liang Yan, I.-Ming Chen,... Design, Modeling and Experiments of 3-DOF Electromagnetic Spherical Actuators (Hardcover, Edition.)
Liang Yan, I.-Ming Chen, Chee Kian Lim, Guilin Yang, Kok-Meng Lee
R2,653 Discovery Miles 26 530 Ships in 18 - 22 working days

A spherical actuator is a novel electric device that can achieve 2/3-DOF rotational motions in a single joint with electric power input. It has advantages such as compact structure, low mass/moment of inertia, fast response and non-singularities within the workspace. It has promising applications in robotics, automobile, manufacturing, medicine and aerospace industry. This is the first monograph that introduces the research on spherical actuators systematically. It broadens the scope of actuators from conventional single-axis to multi-axis, which will help both beginners and researchers to enhance their knowledge on electromagnetic actuators. Generic analytic modeling methods for magnetic field and torque output are developed, which can be applied to the development of other electromagnetic actuators. A parametric design methodology that allows fast analysis and design of spherical actuators for various applications is proposed. A novel non-contact high-precision 3-DOF spherical motion sensing methodology is developed and evaluated with experiments, which shows that it can achieve one order of magnitude higher precision than conventional methods. The technologies of nondimensionalization and normalization are introduced into magnetic field analysis the first time, and a benchmark database is established for the reference of other researches on spherical actuators.

Modular Robots: Theory and Practice (Hardcover, 1st ed. 2022): Guilin Yang, I.-Ming Chen Modular Robots: Theory and Practice (Hardcover, 1st ed. 2022)
Guilin Yang, I.-Ming Chen
R3,985 Discovery Miles 39 850 Ships in 10 - 15 working days

This book introduces the latest advances in modular robotics, and presents a unified geometric framework for modeling, analysis, and design of modular robots, including kinematics, dynamics, calibration, and configuration optimization. Supplementing the main content with a wealth of illustrations, the book offers a valuable guide for researchers, engineers and graduate students in the fields of mechatronics, robotics, and automation who wish to learn about the theory and practice of modular robots.

Modular Robots: Theory and Practice (Paperback, 1st ed. 2022): Guilin Yang, I.-Ming Chen Modular Robots: Theory and Practice (Paperback, 1st ed. 2022)
Guilin Yang, I.-Ming Chen
R3,987 Discovery Miles 39 870 Ships in 18 - 22 working days

This book introduces the latest advances in modular robotics, and presents a unified geometric framework for modeling, analysis, and design of modular robots, including kinematics, dynamics, calibration, and configuration optimization. Supplementing the main content with a wealth of illustrations, the book offers a valuable guide for researchers, engineers and graduate students in the fields of mechatronics, robotics, and automation who wish to learn about the theory and practice of modular robots.

Design, Modeling and Experiments of 3-DOF Electromagnetic Spherical Actuators (Paperback, Softcover reprint of the original 1st... Design, Modeling and Experiments of 3-DOF Electromagnetic Spherical Actuators (Paperback, Softcover reprint of the original 1st ed. 2011)
Liang Yan, I.-Ming Chen, Chee Kian Lim, Guilin Yang, Kok-Meng Lee
R2,653 Discovery Miles 26 530 Ships in 18 - 22 working days

A spherical actuator is a novel electric device that can achieve 2/3-DOF rotational motions in a single joint with electric power input. It has advantages such as compact structure, low mass/moment of inertia, fast response and non-singularities within the workspace. It has promising applications in robotics, automobile, manufacturing, medicine and aerospace industry. This is the first monograph that introduces the research on spherical actuators systematically. It broadens the scope of actuators from conventional single-axis to multi-axis, which will help both beginners and researchers to enhance their knowledge on electromagnetic actuators. Generic analytic modeling methods for magnetic field and torque output are developed, which can be applied to the development of other electromagnetic actuators. A parametric design methodology that allows fast analysis and design of spherical actuators for various applications is proposed. A novel non-contact high-precision 3-DOF spherical motion sensing methodology is developed and evaluated with experiments, which shows that it can achieve one order of magnitude higher precision than conventional methods. The technologies of nondimensionalization and normalization are introduced into magnetic field analysis the first time, and a benchmark database is established for the reference of other researches on spherical actuators.

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