Robot Analysis

Robot Analysis
Author: Lung-Wen Tsai
Publisher: John Wiley & Sons
Total Pages: 526
Release: 1999-02-22
Genre: Technology & Engineering
ISBN: 9780471325932


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Complete, state-of-the-art coverage of robot analysis This unique book provides the fundamental knowledge needed for understanding the mechanics of both serial and parallel manipulators. Presenting fresh and authoritative material on parallel manipulators that is not available in any other resource, it offers an in-depth treatment of position analysis, Jacobian analysis, statics and stiffness analysis, and dynamical analysis of both types of manipulators, including a discussion of industrial and research applications. It also features: * The homotopy continuation method and dialytic elimination method for solving polynomial systems that apply to robot kinematics * Numerous worked examples and problems to reinforce learning * An extensive bibliography offering many resources for more advanced study Drawing on Dr. Lung-Wen Tsai's vast experience in the field as well as recent research publications, Robot Analysis is a first-rate text for upper-level undergraduate and graduate students in mechanical engineering, electrical engineering, and computer studies, as well as an excellent desktop reference for robotics researchers working in industry or in government.

Robot Analysis and Control

Robot Analysis and Control
Author: H. Asada
Publisher: John Wiley & Sons
Total Pages: 286
Release: 1991-01-16
Genre: Technology & Engineering
ISBN: 9780471830290


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Introduces the basic concepts of robot manipulation--the fundamental kinematic and dynamic analysis of manipulator arms, and the key techniques for trajectory control and compliant motion control. Material is supported with abundant examples adapted from successful industrial practice or advanced research topics. Includes carefully devised conceptual diagrams, discussion of current research topics with references to the latest publications, and end-of-book problem sets. Appendixes. Bibliography.

Robot and Multibody Dynamics

Robot and Multibody Dynamics
Author: Abhinandan Jain
Publisher: Springer Science & Business Media
Total Pages: 512
Release: 2010-12-17
Genre: Technology & Engineering
ISBN: 1441972676


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Robot and Multibody Dynamics: Analysis and Algorithms provides a comprehensive and detailed exposition of a new mathematical approach, referred to as the Spatial Operator Algebra (SOA), for studying the dynamics of articulated multibody systems. The approach is useful in a wide range of applications including robotics, aerospace systems, articulated mechanisms, bio-mechanics and molecular dynamics simulation. The book also: treats algorithms for simulation, including an analysis of complexity of the algorithms, describes one universal, robust, and analytically sound approach to formulating the equations that govern the motion of complex multi-body systems, covers a range of more advanced topics including under-actuated systems, flexible systems, linearization, diagonalized dynamics and space manipulators. Robot and Multibody Dynamics: Analysis and Algorithms will be a valuable resource for researchers and engineers looking for new mathematical approaches to finding engineering solutions in robotics and dynamics.

Robot-Proof

Robot-Proof
Author: Joseph E. Aoun
Publisher: MIT Press
Total Pages: 211
Release: 2018-08-14
Genre: Education
ISBN: 0262535971


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How to educate the next generation of college students to invent, to create, and to discover—filling needs that even the most sophisticated robot cannot. Driverless cars are hitting the road, powered by artificial intelligence. Robots can climb stairs, open doors, win Jeopardy, analyze stocks, work in factories, find parking spaces, advise oncologists. In the past, automation was considered a threat to low-skilled labor. Now, many high-skilled functions, including interpreting medical images, doing legal research, and analyzing data, are within the skill sets of machines. How can higher education prepare students for their professional lives when professions themselves are disappearing? In Robot-Proof, Northeastern University president Joseph Aoun proposes a way to educate the next generation of college students to invent, to create, and to discover—to fill needs in society that even the most sophisticated artificial intelligence agent cannot. A “robot-proof” education, Aoun argues, is not concerned solely with topping up students' minds with high-octane facts. Rather, it calibrates them with a creative mindset and the mental elasticity to invent, discover, or create something valuable to society—a scientific proof, a hip-hop recording, a web comic, a cure for cancer. Aoun lays out the framework for a new discipline, humanics, which builds on our innate strengths and prepares students to compete in a labor market in which smart machines work alongside human professionals. The new literacies of Aoun's humanics are data literacy, technological literacy, and human literacy. Students will need data literacy to manage the flow of big data, and technological literacy to know how their machines work, but human literacy—the humanities, communication, and design—to function as a human being. Life-long learning opportunities will support their ability to adapt to change. The only certainty about the future is change. Higher education based on the new literacies of humanics can equip students for living and working through change.

Mechanisms and Robots Analysis with MATLAB®

Mechanisms and Robots Analysis with MATLAB®
Author: Dan B. Marghitu
Publisher: Springer Science & Business Media
Total Pages: 480
Release: 2009-05-06
Genre: Technology & Engineering
ISBN: 1848003900


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Modern technical advancements in areas such as robotics, multi-body systems, spacecraft, control, and design of complex mechanical devices and mechanisms in industry require the knowledge to solve advanced concepts in dynamics. “Mechanisms and Robots Analysis with MATLAB” provides a thorough, rigorous presentation of kinematics and dynamics. The book uses MATLAB as a tool to solve problems from the field of mechanisms and robots. The book discusses the tools for formulating the mathematical equations, and also the methods of solving them using a modern computing tool like MATLAB. An emphasis is placed on basic concepts, derivations, and interpretations of the general principles. The book is of great benefit to senior undergraduate and graduate students interested in the classical principles of mechanisms and robotics systems. Each chapter introduction is followed by a careful step-by-step presentation, and sample problems are provided at the end of every chapter.

Foundations of Robotics

Foundations of Robotics
Author: Tsuneo Yoshikawa
Publisher: MIT Press
Total Pages: 318
Release: 1990
Genre: Computers
ISBN: 9780262240284


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Foundations of Robotics presents the fundamental concepts and methodologies for the analysis, design, and control of robot manipulators.

Human–Robot Interaction

Human–Robot Interaction
Author: Dan Zhang
Publisher: Cambridge Scholars Publishing
Total Pages: 208
Release: 2020-08-19
Genre: Business & Economics
ISBN: 1527558290


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This book introduces state-of-the-art technologies in the field of human-robot interactions. It details advances made in this field in recent decades, including dynamics, controls, design analysis, uncertainties, and modelling. The text will appeal to graduate students, practitioners and researchers in the fields of robotics, computer and cognitive science, and mechanical engineering.

Kinematic Analysis of Robot Manipulators

Kinematic Analysis of Robot Manipulators
Author: Carl D. Crane, III
Publisher: Cambridge University Press
Total Pages: 0
Release: 2008-01-03
Genre: Science
ISBN: 0521047935


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Introduction to robot manipulators, with case studies of industrial robots.

Advances in Robot Kinematics: Analysis and Design

Advances in Robot Kinematics: Analysis and Design
Author: Jadran Lenarčič
Publisher: Springer Science & Business Media
Total Pages: 472
Release: 2008-05-29
Genre: Technology & Engineering
ISBN: 1402086008


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This book presents the most recent research advances in the theory, design, control and application of robotic systems, which are intended for a variety of purposes such as manipulation, manufacturing, automation, surgery, locomotion and biomechanics.