Grasping In Robotics

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Grasping in Robotics

Author: Giuseppe Carbone
language: en
Publisher: Springer Science & Business Media
Release Date: 2012-11-15
Grasping in Robotics contains original contributions in the field of grasping in robotics with a broad multidisciplinary approach. This gives the possibility of addressing all the major issues related to robotized grasping, including milestones in grasping through the centuries, mechanical design issues, control issues, modelling achievements and issues, formulations and software for simulation purposes, sensors and vision integration, applications in industrial field and non-conventional applications (including service robotics and agriculture). The contributors to this book are experts in their own diverse and wide ranging fields. This multidisciplinary approach can help make Grasping in Robotics of interest to a very wide audience. In particular, it can be a useful reference book for researchers, students and users in the wide field of grasping in robotics from many different disciplines including mechanical design, hardware design, control design, user interfaces, modelling, simulation, sensors and humanoid robotics. It could even be adopted as a reference textbook in specific PhD courses.
Robotic Grasping and Manipulation

This book constitutes the refereed proceedings of the First Robotic Grasping and Manipulation Challenge, RGMC 2016, held at IROS 2016, Daejeon, South Korea, in October 2016.The 13 revised full papers presented were carefully reviewed and are describing the rules, results, competitor systems and future directions of the inaugural competition. The competition was designed to allow researchers focused on the application of robot systems to compare the performance of hand designs as well as autonomous grasping and manipulation solutions across a common set of tasks. The competition was comprised of three tracks that included hand-in-hand grasping, fully autonomous grasping, and simulation.
Fundamentals Of Robotic Grasping And Fixturing (Second Edition)

This book is uniquely designed for a thorough understanding of the fundamentals of the robotic grasping and fixturing (RGF) from the multifingered robot hand grasp, humanoid robot hand and basic fixture design principle, and evaluating and planning of robotic grasping/ fixturing. It also focuses on the modeling and applications of the RGF.Three new chapters are added in this edition to cover the relevant basic theories of grasping feature analysis and the new principles of robotic hand design that reproduce the natural motion laws of human hand.Compared with existing publications, this volume concentrates more on abstract formulation, i.e. mathematical modeling of robotic grasping and fixturing. Thus, it will be a good reference text for academic researchers, manufacturing and industrial engineers and a textbook for engineering graduate students.