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Decomposition Techniques in Mathematical Programming - Engineering and Science Applications (Hardcover, 2006 ed.): Antonio J.... Decomposition Techniques in Mathematical Programming - Engineering and Science Applications (Hardcover, 2006 ed.)
Antonio J. Conejo, Enrique Castillo, Roberto Minguez, Raquel Garcia-Bertrand
R6,685 Discovery Miles 66 850 Ships in 10 - 15 working days

Optimization plainly dominates the design, planning, operation, and c- trol of engineering systems. This is a book on optimization that considers particular cases of optimization problems, those with a decomposable str- ture that can be advantageously exploited. Those decomposable optimization problems are ubiquitous in engineering and science applications. The book considers problems with both complicating constraints and complicating va- ables, and analyzes linear and nonlinear problems, with and without in- ger variables. The decomposition techniques analyzed include Dantzig-Wolfe, Benders, Lagrangian relaxation, Augmented Lagrangian decomposition, and others. Heuristic techniques are also considered. Additionally, a comprehensive sensitivity analysis for characterizing the solution of optimization problems is carried out. This material is particularly novel and of high practical interest. This book is built based on many clarifying, illustrative, and compu- tional examples, which facilitate the learning procedure. For the sake of cl- ity, theoretical concepts and computational algorithms are assembled based on these examples. The results are simplicity, clarity, and easy-learning. We feel that this book is needed by the engineering community that has to tackle complex optimization problems, particularly by practitioners and researchersinEngineering, OperationsResearch, andAppliedEconomics.The descriptions of most decomposition techniques are available only in complex and specialized mathematical journals, di?cult to understand by engineers. A book describing a wide range of decomposition techniques, emphasizing problem-solving, and appropriately blending theory and application, was not previously availabl

Advances in Mathematical and Statistical Modeling (Hardcover, 2008 ed.): Barry C. Arnold, N. Balakrishnan, Jose-Maria Sarabia... Advances in Mathematical and Statistical Modeling (Hardcover, 2008 ed.)
Barry C. Arnold, N. Balakrishnan, Jose-Maria Sarabia Alegria, Roberto Minguez
R2,748 Discovery Miles 27 480 Ships in 18 - 22 working days

Enrique Castillo is a leading figure in several mathematical and engineering fields. Organized to honor Castillo 's significant contributions, this volume is an outgrowth of the "International Conference on Mathematical and Statistical Modeling," and covers recent advances in the field. Applications to safety, reliability and life-testing, financial modeling, quality control, general inference, as well as neural networks and computational techniques are presented.

Decomposition Techniques in Mathematical Programming - Engineering and Science Applications (Paperback, Softcover reprint of... Decomposition Techniques in Mathematical Programming - Engineering and Science Applications (Paperback, Softcover reprint of hardcover 1st ed. 2006)
Antonio J. Conejo, Enrique Castillo, Roberto Minguez, Raquel Garcia-Bertrand
R7,230 Discovery Miles 72 300 Ships in 18 - 22 working days

Optimization plainly dominates the design, planning, operation, and c- trol of engineering systems. This is a book on optimization that considers particular cases of optimization problems, those with a decomposable str- ture that can be advantageously exploited. Those decomposable optimization problems are ubiquitous in engineering and science applications. The book considers problems with both complicating constraints and complicating va- ables, and analyzes linear and nonlinear problems, with and without in- ger variables. The decomposition techniques analyzed include Dantzig-Wolfe, Benders, Lagrangian relaxation, Augmented Lagrangian decomposition, and others. Heuristic techniques are also considered. Additionally, a comprehensive sensitivity analysis for characterizing the solution of optimization problems is carried out. This material is particularly novel and of high practical interest. This book is built based on many clarifying, illustrative, and compu- tional examples, which facilitate the learning procedure. For the sake of cl- ity, theoretical concepts and computational algorithms are assembled based on these examples. The results are simplicity, clarity, and easy-learning. We feel that this book is needed by the engineering community that has to tackle complex optimization problems, particularly by practitioners and researchersinEngineering, OperationsResearch, andAppliedEconomics.The descriptions of most decomposition techniques are available only in complex and specialized mathematical journals, di?cult to understand by engineers. A book describing a wide range of decomposition techniques, emphasizing problem-solving, and appropriately blending theory and application, was not previously availabl

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