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This book deals with a class of mathematical problems which involve the minimization of the sum of a volume and a surface energy and have lately been referred to as 'free discontinuity problems'. The aim of this book is twofold: The first three chapters present all the basic prerequisites for the treatment of free discontinuity and other variational problems in a systematic, general, and self-contained way. In the later chapters, the reader is introduced to the theory of free discontinuity problems, to the space of special functions of bounded variation, and is presented with a detailed analysis of the Mumford-Shah image segmentation problem. Existence, regularity and qualitative properties of solutions are explained and a survey is given on the current knowledge of this challenging mathematical problem. The theory embodies classical problems, e.g. related to phase transitions, or fracture and plasticity in continuum mechanics, as well as more recent ones like edge detection in image analysis. This book provides the reader with a solid introduction to the field, written by principle contributors to the theory.
This text investigates the mathematical framework of free discontinuity problems, specifically focusing on the minimization of energy functionals that combine volume and surface terms. The authors, leading experts in the field, provide a rigorous, self-contained development of the theory of functions of bounded variation (BV) and special functions of bounded variation (SBV). By synthesizing foundational prerequisites with advanced analytical techniques, the book establishes a comprehensive methodology for addressing problems in continuum mechanics and image processing.
What You Will Find
Experts recognize this monograph as a foundational reference for researchers and graduate students working in geometric measure theory and the calculus of variations. Readers frequently note the high level of technical rigor and the clarity with which the authors bridge abstract mathematical theory with practical applications in engineering and computer vision.
Page Count:
456
Publication Date:
2000-05-25
Publisher:
Oxford University Press
ISBN-10:
0198502451
ISBN-13:
9780198502456
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