Principles of Robot Motion

Principles of Robot Motion
Author :
Publisher : MIT Press
Total Pages : 627
Release :
ISBN-10 : 9780262033275
ISBN-13 : 0262033275
Rating : 4/5 (75 Downloads)

Synopsis Principles of Robot Motion by : Howie Choset

A text that makes the mathematical underpinnings of robot motion accessible and relates low-level details of implementation to high-level algorithmic concepts. Robot motion planning has become a major focus of robotics. Research findings can be applied not only to robotics but to planning routes on circuit boards, directing digital actors in computer graphics, robot-assisted surgery and medicine, and in novel areas such as drug design and protein folding. This text reflects the great advances that have taken place in the last ten years, including sensor-based planning, probabalistic planning, localization and mapping, and motion planning for dynamic and nonholonomic systems. Its presentation makes the mathematical underpinnings of robot motion accessible to students of computer science and engineering, rleating low-level implementation details to high-level algorithmic concepts.

Principles of Robot Motion

Principles of Robot Motion
Author :
Publisher : MIT Press
Total Pages : 642
Release :
ISBN-10 : 0262033275
ISBN-13 : 9780262033275
Rating : 4/5 (75 Downloads)

Synopsis Principles of Robot Motion by : Howie Choset

A text that makes the mathematical underpinnings of robot motion accessible and relates low-level details of implementation to high-level algorithmic concepts. Robot motion planning has become a major focus of robotics. Research findings can be applied not only to robotics but to planning routes on circuit boards, directing digital actors in computer graphics, robot-assisted surgery and medicine, and in novel areas such as drug design and protein folding. This text reflects the great advances that have taken place in the last ten years, including sensor-based planning, probabalistic planning, localization and mapping, and motion planning for dynamic and nonholonomic systems. Its presentation makes the mathematical underpinnings of robot motion accessible to students of computer science and engineering, rleating low-level implementation details to high-level algorithmic concepts.

Principles of Robot Motion

Principles of Robot Motion
Author :
Publisher :
Total Pages : 626
Release :
ISBN-10 : OCLC:1027163012
ISBN-13 :
Rating : 4/5 (12 Downloads)

Synopsis Principles of Robot Motion by : Howie Choset

A text that makes the mathematical underpinnings of robot motion accessible and relates low-level details of implementation to high-level algorithmic concepts.

Robot Motion Planning

Robot Motion Planning
Author :
Publisher : Springer Science & Business Media
Total Pages : 668
Release :
ISBN-10 : 9781461540229
ISBN-13 : 1461540224
Rating : 4/5 (29 Downloads)

Synopsis Robot Motion Planning by : Jean-Claude Latombe

One of the ultimate goals in Robotics is to create autonomous robots. Such robots will accept high-level descriptions of tasks and will execute them without further human intervention. The input descriptions will specify what the user wants done rather than how to do it. The robots will be any kind of versatile mechanical device equipped with actuators and sensors under the control of a computing system. Making progress toward autonomous robots is of major practical inter est in a wide variety of application domains including manufacturing, construction, waste management, space exploration, undersea work, as sistance for the disabled, and medical surgery. It is also of great technical interest, especially for Computer Science, because it raises challenging and rich computational issues from which new concepts of broad useful ness are likely to emerge. Developing the technologies necessary for autonomous robots is a formidable undertaking with deep interweaved ramifications in auto mated reasoning, perception and control. It raises many important prob lems. One of them - motion planning - is the central theme of this book. It can be loosely stated as follows: How can a robot decide what motions to perform in order to achieve goal arrangements of physical objects? This capability is eminently necessary since, by definition, a robot accomplishes tasks by moving in the real world. The minimum one would expect from an autonomous robot is the ability to plan its x Preface own motions.

Motion Planning for Humanoid Robots

Motion Planning for Humanoid Robots
Author :
Publisher : Springer Science & Business Media
Total Pages : 320
Release :
ISBN-10 : 9781849962209
ISBN-13 : 1849962200
Rating : 4/5 (09 Downloads)

Synopsis Motion Planning for Humanoid Robots by : Kensuke Harada

Research on humanoid robots has been mostly with the aim of developing robots that can replace humans in the performance of certain tasks. Motion planning for these robots can be quite difficult, due to their complex kinematics, dynamics and environment. It is consequently one of the key research topics in humanoid robotics research and the last few years have witnessed considerable progress in the field. Motion Planning for Humanoid Robots surveys the remarkable recent advancement in both the theoretical and the practical aspects of humanoid motion planning. Various motion planning frameworks are presented in Motion Planning for Humanoid Robots, including one for skill coordination and learning, and one for manipulating and grasping tasks. The problem of planning sequences of contacts that support acyclic motion in a highly constrained environment is addressed and a motion planner that enables a humanoid robot to push an object to a desired location on a cluttered table is described. The main areas of interest include: • whole body motion planning, • task planning, • biped gait planning, and • sensor feedback for motion planning. Torque-level control of multi-contact behavior, autonomous manipulation of moving obstacles, and movement control and planning architecture are also covered. Motion Planning for Humanoid Robots will help readers to understand the current research on humanoid motion planning. It is written for industrial engineers, advanced undergraduate and postgraduate students.

Principles of Robot Motion

Principles of Robot Motion
Author :
Publisher :
Total Pages :
Release :
ISBN-10 : 0262303957
ISBN-13 : 9780262303958
Rating : 4/5 (57 Downloads)

Synopsis Principles of Robot Motion by : Howie Choset

Introduction to Autonomous Robots

Introduction to Autonomous Robots
Author :
Publisher :
Total Pages : 226
Release :
ISBN-10 : 0692700870
ISBN-13 : 9780692700877
Rating : 4/5 (70 Downloads)

Synopsis Introduction to Autonomous Robots by : Nikolaus Correll

This book introduces concepts in mobile, autonomous robotics to 3rd-4th year students in Computer Science or a related discipline. The book covers principles of robot motion, forward and inverse kinematics of robotic arms and simple wheeled platforms, perception, error propagation, localization and simultaneous localization and mapping. The cover picture shows a wind-up toy that is smart enough to not fall off a table just using intelligent mechanism design and illustrate the importance of the mechanism in designing intelligent, autonomous systems. This book is open source, open to contributions, and released under a creative common license.

Modern Robotics

Modern Robotics
Author :
Publisher : Cambridge University Press
Total Pages : 545
Release :
ISBN-10 : 9781107156302
ISBN-13 : 1107156300
Rating : 4/5 (02 Downloads)

Synopsis Modern Robotics by : Kevin M. Lynch

A modern and unified treatment of the mechanics, planning, and control of robots, suitable for a first course in robotics.

Computational Principles of Mobile Robotics

Computational Principles of Mobile Robotics
Author :
Publisher : Cambridge University Press
Total Pages : 450
Release :
ISBN-10 : 9781108597876
ISBN-13 : 1108597874
Rating : 4/5 (76 Downloads)

Synopsis Computational Principles of Mobile Robotics by : Gregory Dudek

Now in its third edition, this textbook is a comprehensive introduction to the multidisciplinary field of mobile robotics, which lies at the intersection of artificial intelligence, computational vision, and traditional robotics. Written for advanced undergraduates and graduate students in computer science and engineering, the book covers algorithms for a range of strategies for locomotion, sensing, and reasoning. The new edition includes recent advances in robotics and intelligent machines, including coverage of human-robot interaction, robot ethics, and the application of advanced AI techniques to end-to-end robot control and specific computational tasks. This book also provides support for a number of algorithms using ROS 2, and includes a review of critical mathematical material and an extensive list of sample problems. Researchers as well as students in the field of mobile robotics will appreciate this comprehensive treatment of state-of-the-art methods and key technologies.