Postoptimal Analyses, Parametric Programming, and Related Topics

Postoptimal Analyses, Parametric Programming, and Related Topics
Title Postoptimal Analyses, Parametric Programming, and Related Topics PDF eBook
Author Tomáš Gál
Publisher de Gruyter
Pages 0
Release 1995
Genre Decision-making
ISBN 9783110140606

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Postoptimal Analyses, Parametric Programming, and Related Topics

Postoptimal Analyses, Parametric Programming, and Related Topics
Title Postoptimal Analyses, Parametric Programming, and Related Topics PDF eBook
Author Tomas Gal
Publisher Walter de Gruyter
Pages 465
Release 2010-09-03
Genre Computers
ISBN 3110871203

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Postoptimal Analyses, Parametric Programming, and Related Topics: Degeneracy, Multicriteria Decision Making Redundancy.

Multi-parametric Optimization and Control

Multi-parametric Optimization and Control
Title Multi-parametric Optimization and Control PDF eBook
Author Efstratios N. Pistikopoulos
Publisher John Wiley & Sons
Pages 320
Release 2020-11-24
Genre Mathematics
ISBN 1119265185

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Recent developments in multi-parametric optimization and control Multi-Parametric Optimization and Control provides comprehensive coverage of recent methodological developments for optimal model-based control through parametric optimization. It also shares real-world research applications to support deeper understanding of the material. Researchers and practitioners can use the book as reference. It is also suitable as a primary or a supplementary textbook. Each chapter looks at the theories related to a topic along with a relevant case study. Topic complexity increases gradually as readers progress through the chapters. The first part of the book presents an overview of the state-of-the-art multi-parametric optimization theory and algorithms in multi-parametric programming. The second examines the connection between multi-parametric programming and model-predictive control—from the linear quadratic regulator over hybrid systems to periodic systems and robust control. The third part of the book addresses multi-parametric optimization in process systems engineering. A step-by-step procedure is introduced for embedding the programming within the system engineering, which leads the reader into the topic of the PAROC framework and software platform. PAROC is an integrated framework and platform for the optimization and advanced model-based control of process systems. Uses case studies to illustrate real-world applications for a better understanding of the concepts presented Covers the fundamentals of optimization and model predictive control Provides information on key topics, such as the basic sensitivity theorem, linear programming, quadratic programming, mixed-integer linear programming, optimal control of continuous systems, and multi-parametric optimal control An appendix summarizes the history of multi-parametric optimization algorithms. It also covers the use of the parametric optimization toolbox (POP), which is comprehensive software for efficiently solving multi-parametric programming problems.

Stable Parametric Programming

Stable Parametric Programming
Title Stable Parametric Programming PDF eBook
Author S. Zlobec
Publisher Springer Science & Business Media
Pages 329
Release 2013-11-21
Genre Business & Economics
ISBN 1461500117

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Optimality and stability are two important notions in applied mathematics. This book is a study of these notions and their relationship in linear and convex parametric programming models. It begins with a survey of basic optimality conditions in nonlinear programming. Then new results in convex programming, using LFS functions, for single-objective, multi-objective, differentiable and non-smooth programs are introduced. Parametric programming models are studied using basic tools of point-to-set topology. Stability of the models is introduced, essentially, as continuity of the feasible set of decision variables under continuous perturbations of the parameters. Perturbations that preserve this continuity are regions of stability. It is shown how these regions can be identified. The main results on stability are characterizations of locally and globally optimal parameters for stable and also for unstable perturbations. The results are straightened for linear models and bi-level programs. Some of the results are extended to abstract spaces after considering parameters as `controls'. Illustrations from diverse fields, such as data envelopment analysis, management, von Stackelberg games of market economy, and navigation problems are given and several case studies are solved by finding optimal parameters. The book has been written in an analytic spirit. Many results appear here for the first time in book form. Audience: The book is written at the level of a first-year graduate course in optimization for students with varied backgrounds interested in modeling of real-life problems. It is expected that the reader has been exposed to a prior elementary course in optimization, such as linear or non-linear programming. The last section of the book requires some knowledge of functional analysis.

Uncertainty-aware Integration of Control with Process Operations and Multi-parametric Programming Under Global Uncertainty

Uncertainty-aware Integration of Control with Process Operations and Multi-parametric Programming Under Global Uncertainty
Title Uncertainty-aware Integration of Control with Process Operations and Multi-parametric Programming Under Global Uncertainty PDF eBook
Author Vassilis M. Charitopoulos
Publisher Springer Nature
Pages 285
Release 2020-02-05
Genre Science
ISBN 3030381374

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This book introduces models and methodologies that can be employed towards making the Industry 4.0 vision a reality within the process industries, and at the same time investigates the impact of uncertainties in such highly integrated settings. Advances in computing power along with the widespread availability of data have led process industries to consider a new paradigm for automated and more efficient operations. The book presents a theoretically proven optimal solution to multi-parametric linear and mixed-integer linear programs and efficient solutions to problems such as process scheduling and design under global uncertainty. It also proposes a systematic framework for the uncertainty-aware integration of planning, scheduling and control, based on the judicious coupling of reactive and proactive methods. Using these developments, the book demonstrates how the integration of different decision-making layers and their simultaneous optimisation can enhance industrial process operations and their economic resilience in the face of uncertainty.

Apors: Development In Diversity And Hearmony - Proceedings Of The Third Conference

Apors: Development In Diversity And Hearmony - Proceedings Of The Third Conference
Title Apors: Development In Diversity And Hearmony - Proceedings Of The Third Conference PDF eBook
Author Kaoru Tone
Publisher World Scientific
Pages 640
Release 1995-02-28
Genre
ISBN 9814549606

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This book consists of selected papers presented at the Third Conference of the Asian-Pacific Operational Research Societies. The selected papers cover broad areas of operations research, ranging from traditional to new directions in theory, algorithm and applications. Typical topics are linear and nonlinear programming, interior point method, combinatorial programming, scheduling, queueing theory, simulation, forecasting, inventory, telecommunication, finance, organizational intelligence, analytic hierarchy process, data envelopment analysis, fuzzy programming and others.

Advances in Sensitivity Analysis and Parametric Programming

Advances in Sensitivity Analysis and Parametric Programming
Title Advances in Sensitivity Analysis and Parametric Programming PDF eBook
Author Tomas Gal
Publisher Springer Science & Business Media
Pages 595
Release 2012-12-06
Genre Business & Economics
ISBN 1461561035

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The standard view of Operations Research/Management Science (OR/MS) dichotomizes the field into deterministic and probabilistic (nondeterministic, stochastic) subfields. This division can be seen by reading the contents page of just about any OR/MS textbook. The mathematical models that help to define OR/MS are usually presented in terms of one subfield or the other. This separation comes about somewhat artificially: academic courses are conveniently subdivided with respect to prerequisites; an initial overview of OR/MS can be presented without requiring knowledge of probability and statistics; text books are conveniently divided into two related semester courses, with deterministic models coming first; academics tend to specialize in one subfield or the other; and practitioners also tend to be expert in a single subfield. But, no matter who is involved in an OR/MS modeling situation (deterministic or probabilistic - academic or practitioner), it is clear that a proper and correct treatment of any problem situation is accomplished only when the analysis cuts across this dichotomy.