Types Of Robot Manipulators

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Exploring the World of Robot Manipulators

Author: Serdar Küçük
language: en
Publisher: BoD – Books on Demand
Release Date: 2024-10-16
Robotic products have become so much a part of our lives that it has become commonplace to encounter a robotic product at school, in a factory, at work, or on the street. Since engineers design and produce these devices, it would be appropriate to call this field “robotic engineering.” Robotic engineering is an important part of modern engineering and directly includes many branches of science. These branches of science can be defined as electrical and electronics, computer, mathematics, and mechanical engineering. The interest in multi-robot systems (such as serial robots, parallel robots, mobile robots, and hybrid robots) contributes to the development of new theoretical research areas and new robotic products. This book covers the current developments in the multi-robot systems mentioned previously.
Robot Manipulator Control

Robot Manipulator Control offers a complete survey of control systems for serial-link robot arms and acknowledges how robotic device performance hinges upon a well-developed control system. Containing over 750 essential equations, this thoroughly up-to-date Second Edition, the book explicates theoretical and mathematical requisites for controls design and summarizes current techniques in computer simulation and implementation of controllers. It also addresses procedures and issues in computed-torque, robust, adaptive, neural network, and force control. New chapters relay practical information on commercial robot manipulators and devices and cutting-edge methods in neural network control.
Robot Manipulators

Author: Marco Ceccarelli
language: en
Publisher: BoD – Books on Demand
Release Date: 2008-09-01
In this book we have grouped contributions in 28 chapters from several authors all around the world on the several aspects and challenges of research and applications of robots with the aim to show the recent advances and problems that still need to be considered for future improvements of robot success in worldwide frames. Each chapter addresses a specific area of modeling, design, and application of robots but with an eye to give an integrated view of what make a robot a unique modern system for many different uses and future potential applications. Main attention has been focused on design issues as thought challenging for improving capabilities and further possibilities of robots for new and old applications, as seen from today technologies and research programs. Thus, great attention has been addressed to control aspects that are strongly evolving also as function of the improvements in robot modeling, sensors, servo-power systems, and informatics. But even other aspects are considered as of fundamental challenge both in design and use of robots with improved performance and capabilities, like for example kinematic design, dynamics, vision integration.