Planning Algorithms

Planning Algorithms

by Steven M. LaValle
ISBN-10:
0521862051
ISBN-13:
9780521862059
Pub. Date:
05/29/2006
Publisher:
Cambridge University Press
ISBN-10:
0521862051
ISBN-13:
9780521862059
Pub. Date:
05/29/2006
Publisher:
Cambridge University Press
Planning Algorithms

Planning Algorithms

by Steven M. LaValle
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Overview

Planning algorithms are impacting technical disciplines and industries around the world, including robotics, computer-aided design, manufacturing, computer graphics, aerospace applications, drug design, and protein folding. Written for computer scientists and engineers with interests in artificial intelligence, robotics, or control theory, this is the only book on this topic that tightly integrates a vast body of literature from several fields into a coherent source for teaching and reference in a wide variety of applications. Difficult mathematical material is explained through hundreds of examples and illustrations.

Product Details

ISBN-13: 9780521862059
Publisher: Cambridge University Press
Publication date: 05/29/2006
Edition description: New Edition
Pages: 844
Sales rank: 923,976
Product dimensions: 7.17(w) x 10.31(h) x 1.69(d)

About the Author

Steven M. LaValle is Associate Professor of Computer Science at the University of Illinois, Urbana-Champaign. He has worked in motion planning and robotics for over a decade and is a leading researcher who has published dozens of articles in the field. He is the main developer of the Rapidly-exploring Random Tree (RRT) algorithm, which has been used in numerous research labs and industrial products around the world. He has taught material on which the book is based at Stanford University, Iowa State University, the Tec de Monterrey, and the University of Illinois.

Table of Contents

Part I. Introductory Material: 1. Introduction; 2. Discrete planning; Part II. Motion Planning: 3. Geometric representations and transformations; 4. The configuration space; 5. Sampling-based motion planning; 6. Combinatorial motion planning; 7. Extensions of basic motion planning; 8. Feedback motion planning; Part III. Decision-Theoretic Planning: 9. Basic decision theory; 10. Sequential decision theory; 11. Information spaces; 12. Planning under sensing uncertainty; Part IV. Planning Under Differential Constraints: 13. Differential models; 14. Sampling-based planning under differential constraints; 15. System theory and analytical techniques.
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