Motion Planning

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Planning Algorithms

Author : Steven Michael LaValle
Publisher : Unknown
Page : 826 pages
File Size : 49,7 Mb
Release : 2006
Category : Algorithms
ISBN : 051124133X

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Planning Algorithms by Steven Michael LaValle Pdf

Written for computer scientists and engineers with interests in artificial intelligence, robotics, or control theory, this is the only book on this topic that integrates literature from several fields into a coherent source for teaching and reference in applications including robotics, computational biology, computer graphics, manufacturing, aerospace applications, and medicine.

Robot Motion Planning

Author : Jean-Claude Latombe
Publisher : Springer Science & Business Media
Page : 668 pages
File Size : 40,6 Mb
Release : 2012-12-06
Category : Technology & Engineering
ISBN : 9781461540229

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Robot Motion Planning by Jean-Claude Latombe Pdf

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.

Modern Robotics

Author : Kevin M. Lynch,Frank C. Park
Publisher : Cambridge University Press
Page : 545 pages
File Size : 41,5 Mb
Release : 2017-05-25
Category : Computers
ISBN : 9781107156302

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Modern Robotics by Kevin M. Lynch,Frank C. Park Pdf

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

Nonholonomic Motion Planning

Author : Zexiang Li,J.F. Canny
Publisher : Springer Science & Business Media
Page : 455 pages
File Size : 53,5 Mb
Release : 2012-12-06
Category : Technology & Engineering
ISBN : 9781461531760

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Nonholonomic Motion Planning by Zexiang Li,J.F. Canny Pdf

Nonholonomic Motion Planning grew out of the workshop that took place at the 1991 IEEE International Conference on Robotics and Automation. It consists of contributed chapters representing new developments in this area. Contributors to the book include robotics engineers, nonlinear control experts, differential geometers and applied mathematicians. Nonholonomic Motion Planning is arranged into three chapter groups: Controllability: one of the key mathematical tools needed to study nonholonomic motion. Motion Planning for Mobile Robots: in this section the papers are focused on problems with nonholonomic velocity constraints as well as constraints on the generalized coordinates. Falling Cats, Space Robots and Gauge Theory: there are numerous connections to be made between symplectic geometry techniques for the study of holonomies in mechanics, gauge theory and control. In this section these connections are discussed using the backdrop of examples drawn from space robots and falling cats reorienting themselves. Nonholonomic Motion Planning can be used either as a reference for researchers working in the areas of robotics, nonlinear control and differential geometry, or as a textbook for a graduate level robotics or nonlinear control course.

The Complexity of Robot Motion Planning

Author : John Canny
Publisher : MIT Press
Page : 220 pages
File Size : 53,9 Mb
Release : 1988
Category : Computers
ISBN : 0262031361

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The Complexity of Robot Motion Planning by John Canny Pdf

The Complexity of Robot Motion Planning makes original contributions both to roboticsand to the analysis of algorithms. In this groundbreaking monograph John Canny resolveslong-standing problems concerning the complexity of motion planning and, for the central problem offinding a collision free path for a jointed robot in the presence of obstacles, obtains exponentialspeedups over existing algorithms by applying high-powered new mathematical techniques.Canny's newalgorithm for this "generalized movers' problem," the most-studied and basic robot motion planningproblem, has a single exponential running time, and is polynomial for any given robot. The algorithmhas an optimal running time exponent and is based on the notion of roadmaps - one-dimensionalsubsets of the robot's configuration space. In deriving the single exponential bound, Cannyintroduces and reveals the power of two tools that have not been previously used in geometricalgorithms: the generalized (multivariable) resultant for a system of polynomials and Whitney'snotion of stratified sets. He has also developed a novel representation of object orientation basedon unnormalized quaternions which reduces the complexity of the algorithms and enhances theirpractical applicability.After dealing with the movers' problem, the book next attacks and derivesseveral lower bounds on extensions of the problem: finding the shortest path among polyhedralobstacles, planning with velocity limits, and compliant motion planning with uncertainty. Itintroduces a clever technique, "path encoding," that allows a proof of NP-hardness for the first twoproblems and then shows that the general form of compliant motion planning, a problem that is thefocus of a great deal of recent work in robotics, is non-deterministic exponential time hard. Cannyproves this result using a highly original construction.John Canny received his doctorate from MITAnd is an assistant professor in the Computer Science Division at the University of California,Berkeley. The Complexity of Robot Motion Planning is the winner of the 1987 ACM DoctoralDissertation Award.

Repetitive Motion Planning and Control of Redundant Robot Manipulators

Author : Yunong Zhang,Zhijun Zhang
Publisher : Springer Science & Business Media
Page : 196 pages
File Size : 51,8 Mb
Release : 2014-07-08
Category : Technology & Engineering
ISBN : 9783642375187

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Repetitive Motion Planning and Control of Redundant Robot Manipulators by Yunong Zhang,Zhijun Zhang Pdf

Repetitive Motion Planning and Control of Redundant Robot Manipulators presents four typical motion planning schemes based on optimization techniques, including the fundamental RMP scheme and its extensions. These schemes are unified as quadratic programs (QPs), which are solved by neural networks or numerical algorithms. The RMP schemes are demonstrated effectively by the simulation results based on various robotic models; the experiments applying the fundamental RMP scheme to a physical robot manipulator are also presented. As the schemes and the corresponding solvers presented in the book have solved the non-repetitive motion problems existing in redundant robot manipulators, it is of particular use in applying theoretical research based on the quadratic program for redundant robot manipulators in industrial situations. This book will be a valuable reference work for engineers, researchers, advanced undergraduate and graduate students in robotics fields. Yunong Zhang is a professor at The School of Information Science and Technology, Sun Yat-sen University, Guangzhou, China; Zhijun Zhang is a research fellow working at the same institute.

Motion Planning in Dynamic Environments

Author : Kikuo Fujimura
Publisher : Springer Science & Business Media
Page : 190 pages
File Size : 49,5 Mb
Release : 2012-12-06
Category : Computers
ISBN : 9784431681656

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Motion Planning in Dynamic Environments by Kikuo Fujimura Pdf

Computer Science Workbench is a monograph series which will provide you with an in-depth working knowledge of current developments in computer technology. Every volume in this series will deal with a topic of importance in computer science and elaborate on how you yourself can build systems related to the main theme. You will be able to develop a variety of systems, including computer software tools, computer graphics, computer animation, database management systems, and computer-aided design and manufacturing systems. Computer Science Workbench represents an important new contribution in the field of practical computer technology. TOSIYASU L. KUNII To my parents Kenjiro and Nori Fujimura Preface Motion planning is an area in robotics that has received much attention recently. Much of the past research focuses on static environments - various methods have been developed and their characteristics have been well investigated. Although it is essential for autonomous intelligent robots to be able to navigate within dynamic worlds, the problem of motion planning in dynamic domains is relatively little understood compared with static problems.

Planning, Geometry, and Complexity of Robot Motion

Author : Jacob T. Schwartz,Micha Sharir,John E. Hopcroft
Publisher : Intellect Books
Page : 364 pages
File Size : 41,8 Mb
Release : 1987
Category : Science
ISBN : UOM:39015011737981

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Planning, Geometry, and Complexity of Robot Motion by Jacob T. Schwartz,Micha Sharir,John E. Hopcroft Pdf

Robotics has come to attract the attention of mathematicians and theoretical computer scientists to a rapidly increasing degree. Initial investigations have shown that robotics is a rich source of deep theoretical problems, which range over computational geometry, control theory, and many aspects of physics, and whose solutions draw upon methods developed in subjects as diverse as automata theory, algebraic topology, and Fourier analysis.

Motion Planning for Humanoid Robots

Author : Kensuke Harada,Eiichi Yoshida,Kazuhito Yokoi
Publisher : Springer Science & Business Media
Page : 320 pages
File Size : 41,9 Mb
Release : 2010-08-12
Category : Technology & Engineering
ISBN : 9781849962209

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Motion Planning for Humanoid Robots by Kensuke Harada,Eiichi Yoshida,Kazuhito Yokoi Pdf

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.

Robot Motion Planning and Control

Author : Jean-Paul Laumond
Publisher : Springer
Page : 347 pages
File Size : 53,6 Mb
Release : 2014-03-12
Category : Technology & Engineering
ISBN : 3662167905

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Robot Motion Planning and Control by Jean-Paul Laumond Pdf

How can a robot decide what motions to perform in order to achieve tasks in the physical world? Robot motion planning encompasses several different disciplines, most notably robotics, computer science, control theory and mathematics. This volume presents an interdisciplinary account of recent developments in the field. Topics covered include: combining geometric algorithms and control techniques to account for the nonholonomic constraints of most mobile robots; the mathematical machinery necessary for understanding nonholonomic systems; applying optimal techniques to compute optimal paths; feedback control for nonholonomic mobile robots; probabilistic algorithms and new motion planning approaches; and a survey of recent techniques for dealing with collision detection.

Robot Motion

Author : Michael Brady
Publisher : MIT Press
Page : 618 pages
File Size : 45,5 Mb
Release : 1982
Category : Computers
ISBN : 026202182X

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Robot Motion by Michael Brady Pdf

Dynamics; Feedback control; Trajectory planning; Compliance; Task planning.

Motion Planning in Medicine: Optimization and Simulation Algorithms for Image-Guided Procedures

Author : Ron Alterovitz,Ken Goldberg
Publisher : Springer
Page : 156 pages
File Size : 46,9 Mb
Release : 2008-09-20
Category : Technology & Engineering
ISBN : 9783540692591

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Motion Planning in Medicine: Optimization and Simulation Algorithms for Image-Guided Procedures by Ron Alterovitz,Ken Goldberg Pdf

Written by Ron Alterovitz and Ken Goldberg, this monograph combines ideas from robotics, physically-based modeling, and operations research to develop new motion planning and optimization algorithms for image-guided medical procedures.

Practical Motion Planning in Robotics

Author : Kamal Gupta,Angel P. del Pobil
Publisher : Chichester, England ; Toronto : J. Wiley
Page : 376 pages
File Size : 50,5 Mb
Release : 1998-10-15
Category : Computers
ISBN : STANFORD:36105023217081

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Practical Motion Planning in Robotics by Kamal Gupta,Angel P. del Pobil Pdf

Practical Motion Planning in Robotics Current Approaches and Future Directions Edited by Kamal Gupta Simon Fraser University, Burnaby, Canada Angel P. del Pobil Jaume-l University, Castellon, Spain Designed to bridge the gap between research and industry, Practical Motion Planning in Robotics brings theoretical advances to bear on real-world applications. Capitalizing on recent progress, this comprehensive study emphasizes the practical aspects of techniques for collision detection, obstacle avoidance, path planning and manipulation planning. The broad approach spans both model- and sensor-based motion planning, collision detection and geometric complexity, and future directions. Features include: - Review of state-of-the-art techniques and coverage of the main issues to be considered in the development of motion planners for use in real applications - Focus on gross motion planning for articulated arms enabling robots to perform non-contact tasks with relatively high tolerances plus brief consideration of mobile robots - The use of efficient algorithms to tackle incremental changes in the environment - Illlustration of robot motion planning applications in virtual prototyping and the shipbuilding industry - Demonstration of efficient path planners combining both local and global planning approaches in conjunction with efficient techniques for collision detection and distance computations - International contributions from academia and industry Combining theory and practice, this timely book will appeal to academic researchers and practising engineers in the fields of robotic systems, mechatronics and computer science.

Mobile Robots in Rough Terrain

Author : Karl Iagnemma,Steven Dubowsky
Publisher : Springer Science & Business Media
Page : 136 pages
File Size : 41,6 Mb
Release : 2004-07-08
Category : Technology & Engineering
ISBN : 3540219684

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Mobile Robots in Rough Terrain by Karl Iagnemma,Steven Dubowsky Pdf

This monograph discusses issues related to estimation, control, and motion planning for mobile robots operating in rough terrain, with particular attention to planetary exploration rovers. Rough terrain robotics is becoming increasingly important in space exploration, and industrial applications. However, most current motion planning and control algorithms are not well suited to rough terrain mobility, since they do not consider the physical characteristics of the rover and its environment. Specific addressed topics are: wheel terrain interaction modeling, including terrain parameter estimation and wheel terrain contact angle estimation; rough terrain motion planning; articulated suspension control; and traction control. Simulation and experimental results are presented that show that the desribed algorithms lead to improved mobility for robotic systems in rough terrain.

Robot Kinematics and Motion Planning

Author : Wayne Adams
Publisher : Nova Publishers
Page : 0 pages
File Size : 42,5 Mb
Release : 2015
Category : Robots
ISBN : 1634833910

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Robot Kinematics and Motion Planning by Wayne Adams Pdf

The authors' of this book focus on the latest developments in robot kinematics and motion planning. The first chapter seeks to identify the governing rules implemented in the central nervous system (CNS) to solve redundant mapping problems from an experimental observation approach. The novelty of this chapter is in the obtained motion planning results for a constraint elbow joint during reaching movements. The second chapter focuses on the problems that exist in the two-norm and infinity-norm and solutions to these problems involving bi-criteria (BC) motion planning schemes of different joint-level vectors. In the third chapter, trajectory generation methods for the application of thermal spraying processes are introduced. In the fourth chapter, an investigation on the robot kinematics is proposed to find the rules of motion in an application case. The results demonstrate the motion behavior of each axis in the robot that consequently permits the identification of the motion problems in the trajectory. In the fifth chapter, kinematic properties of a new planar parallel manipulator is investigated by means of the theory of screws.