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Avis sur Optimization Modeling With Spreadsheets de Kenneth R. Baker Format Relié - Livre
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Présentation Optimization Modeling With Spreadsheets de Kenneth R. Baker Format Relié
- Livre
Résumé : An accessible introduction to optimization analysis using spreadsheets Updated and revised, Optimization Modeling with Spreadsheets, Third Edition emphasizes model building skills in optimization analysis. By emphasizing both spreadsheet modeling and optimization tools in the freely available Microsoft? Office Excel? Solver, the book illustrates how to find solutions to real-world optimization problems without needing additional specialized software. The Third Edition includes many practical applications of optimization models as well as a systematic framework that illuminates the common structures found in many successful models. With focused coverage on linear programming, nonlinear programming, integer programming, and heuristic programming, Optimization Modeling with Spreadsheets, Third Edition features: Optimization Modeling with Spreadsheets, Third Edition is an excellent textbook for upper-undergraduate and graduate-level courses that include deterministic models, optimization, spreadsheet modeling, quantitative methods, engineering management, engineering modeling, operations research, and management science. The book is an ideal reference for readers wishing to advance their knowledge of Excel and modeling and is also a useful guide for MBA students and modeling practitioners in business and non-profit sectors interested in spreadsheet optimization.
Biographie: Kenneth R. Baker, PhD, is Nathaniel Leverone Professor of Management at the Tuck School of Business and Adjunct Professor of Engineering at Dartmouth College. A Fellow of the Institute for Operations Research and the Management Sciences (INFORMS), Dr. Baker has published extensively in his areas of research interest, which include mathematical modeling, spreadsheet engineering, and scheduling. He is also coauthor of Principles of Sequencing and Scheduling and Management Science: The Art of Modeling with Spreadsheets, Fourth Edition, both published by Wiley.
Sommaire: Preface ix 1 Introduction to Spreadsheet Models for Optimization 1 2 Linear Programming: Allocation, Covering, and Blending Models 21 3 Linear Programming: Network Models 65 4 Sensitivity Analysis in Linear Programs 108 5 Linear Programming: Data Envelopment Analysis 160 6 Integer Programming: Binary?-Choice Models 191 7 Integer Programming: Logical Constraints 227 8 Nonlinear Programming 270 9 Heuristic Solutions with the Evolutionary Solver 307 Appendices 1 Supplemental Files and Software 348 2 Graphical Methods for Linear Programming 350 3 The Simplex Method 357 Index 366
1.1 Elements of a Model 2
1.2 Spreadsheet Models 4
1.3 A Hierarchy for Analysis 7
1.4 Optimization Software 8
1.5 Using Solver 10
2.1 Linear Models 22
2.2 Allocation Models 29
2.3 Covering Models 38
2.4 Blending Models 47
2.5 Modeling Errors in Linear Programming 52
3.1 The Transportation Model 66
3.2 The Assignment Model 71
3.3 The Transshipment Model 75
3.4 Features of Special Network Models 78
3.5 Building Network Models with Balance Equations 79
3.6 General Network Models with Yields 84
3.7 General Network Models with Transformed Flows 91
4.1 Parameter Analysis in the Transportation Example 109
4.2 Parameter Analysis in the Allocation Example 116
4.3 The Sensitivity Report and the Transportation Example 123
4.4 The Sensitivity Report and the Allocation Example 127
4.5 Degeneracy and Alternative Optima 129
4.6 Patterns in Linear Programming Solutions 133
5.1 A Graphical Perspective on DEA 162
5.2 An Algebraic Perspective on DEA 166
5.3 A Spreadsheet Model for DEA 168
5.4 Indexing 173
5.5 Reference Sets and HCUs 174
5.6 Assumptions and Limitations of DEA 178
6.1 Using Solver with Integer Requirements 193
6.2 The Capital Budgeting Problem 198
6.3 Set Covering 202
6.4 Set Packing 205
6.5 Set Partitioning 208
6.6 Playoff Scheduling 211
6.7 The Algorithm for Solving Integer Programs 215
7.1 Simple Logical Constraints: Exclusivity 229
7.2 Linking Constraints: The Fixed Cost Problem 231
7.3 Linking Constraints: The Threshold Level Problem 237
7.4 Linking Constraints: The Facility Location Model 238
7.5 Disjunctive Constraints: The Machine?-Sequencing Problem 246
7.6 Tour Constraints: The Traveling Salesperson Problem 251
8.1 One?-Variable Models 271
8.2 Local Optima and the Search for an Optimum 277
8.3 Two?-Variable Models 280
8.4 Nonlinear Models with Constraints 285
8.5 Linearizations 293
9.1 Features of the Evolutionary Solver 308
9.2 An Illustrative Example: Nonlinear Regression 309
9.3 The Machine?-Sequencing Problem Revisited 317
9.4 The Traveling Salesperson Problem Revisited 319
9.5 Budget Allocation 322
9.6 Two?-Dimensional Location 324
9.7 Line Balancing 327
9.8 Group Assignment 331
A1.1 Supplemental Microsoft Office Excel Files 348
A1.2 Analytic Solver Platform for Education Software 348
A1.3 Opensolver Software 349
A2.1 An Example 350
A2.2 Generalities 355
A3.1 An Example 357
A3.2 Variations of the Algorithm 362
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