A Computational Procedure For Fixed Time Fuel Optimal Control Of Linear State Constrained Systems
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Optimal Control by Mathematical Programming
Author | : Daniel Tabak |
Publisher | : Prentice Hall |
Total Pages | : 264 |
Release | : 1971 |
Genre | : Mathematics |
ISBN | : |
Structural Dynamics and Resilience in Supply Chain Risk Management
Author | : Dmitry Ivanov |
Publisher | : Springer |
Total Pages | : 332 |
Release | : 2017-11-07 |
Genre | : Business & Economics |
ISBN | : 3319693050 |
This book offers an introduction to structural dynamics, ripple effect and resilience in supply chain disruption risk management for larger audiences. In the management section, without relying heavily on mathematical derivations, the book offers state-of-the-art concepts and methods to tackle supply chain disruption risks and designing resilient supply chains in a simple, predictable format to make it easy to understand for students and professionals with both management and engineering background. In the technical section, the book constitutes structural dynamics control methods for supply chain management. Real-life problems are modelled and solved with the help of mathematical programming, discrete-event simulation, optimal control theory, and fuzzy logic. The book derives practical recommendations for management decision-making with disruption risk in the following areas: How to estimate the impact of possible disruptions on performance in the pro-active stage? How to generate efficient and effective stabilization and recovery policies? When does one failure trigger an adjacent set of failures? Which supply chain structures are particular sensitive to ripple effect? How to measure the disruption risks in the supply chain?
Energy Optimization in Process Systems and Fuel Cells
Author | : Stanislaw Sieniutycz |
Publisher | : Elsevier |
Total Pages | : 814 |
Release | : 2018-05-16 |
Genre | : Technology & Engineering |
ISBN | : 0081025580 |
Energy Optimization in Process Systems and Fuel Cells, Third Edition covers the optimization and integration of energy systems, with a particular focus on fuel cell technology. With rising energy prices, imminent energy shortages, and the increasing environmental impacts of energy production, energy optimization and systems integration is critically important. The book applies thermodynamics, kinetics and economics to study the effect of equipment size, environmental parameters, and economic factors on optimal power production and heat integration. Author Stanislaw Sieniutycz, highly recognized for his expertise and teaching, shows how costs can be substantially reduced, particularly in utilities common in the chemical industry. This third edition contains substantial revisions and modifications, with new material on catalytic reactors, sorption systems, sorbent or catalyst regenerators, dryers, and more. - Presents a unified approach to the optimization and integration of energy systems - Includes a large number of examples treating dynamical systems - Provides exposition showing the power of thermodynamics - Contains a large number of maximum power analyses and their extensions