Modeling, Analysis, and Design of Distributed Control Systems for Improved Performance
Author: John Keunha Yook
Publisher:
Published: 2001
Total Pages: 258
ISBN-13:
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Author: John Keunha Yook
Publisher:
Published: 2001
Total Pages: 258
ISBN-13:
DOWNLOAD EBOOKAuthor: Matjaž Colnaric
Publisher: Springer Science & Business Media
Published: 2007-11-21
Total Pages: 260
ISBN-13: 1848000529
DOWNLOAD EBOOKThis fascinating new work comes complete with more than 100 illustrations and a detailed practical prototype. It explores the domains encountered when designing a distributed embedded computer control system as an integrated whole. Basic issues about real-time systems and their properties, especially safety, are examined first. Then, system and hardware architectures are dealt with, along with programming issues, embodying desired properties, basic language subsets, object orientation and language support for hardware and software specifications.
Author:
Publisher:
Published: 2008
Total Pages: 906
ISBN-13:
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Publisher: UM Libraries
Published: 1995
Total Pages: 40
ISBN-13:
DOWNLOAD EBOOKAuthor: Ian T. Cameron
Publisher: Elsevier
Published: 2001-05-23
Total Pages: 561
ISBN-13: 0080514928
DOWNLOAD EBOOKProcess Modelling and Model Analysis describes the use of models in process engineering. Process engineering is all about manufacturing--of just about anything! To manage processing and manufacturing systematically, the engineer has to bring together many different techniques and analyses of the interaction between various aspects of the process. For example, process engineers would apply models to perform feasibility analyses of novel process designs, assess environmental impact, and detect potential hazards or accidents. To manage complex systems and enable process design, the behavior of systems is reduced to simple mathematical forms. This book provides a systematic approach to the mathematical development of process models and explains how to analyze those models. Additionally, there is a comprehensive bibliography for further reading, a question and answer section, and an accompanying Web site developed by the authors with additional data and exercises. - Introduces a structured modeling methodology emphasizing the importance of the modeling goal and including key steps such as model verification, calibration, and validation - Focuses on novel and advanced modeling techniques such as discrete, hybrid, hierarchical, and empirical modeling - Illustrates the notions, tools, and techniques of process modeling with examples and advances applications
Author: M. Meyyappan
Publisher: The Electrochemical Society
Published: 1997
Total Pages: 366
ISBN-13: 9781566771368
DOWNLOAD EBOOKAuthor: Arben Çela
Publisher: Springer Science & Business Media
Published: 2013-11-29
Total Pages: 297
ISBN-13: 3319027298
DOWNLOAD EBOOKOptimal Design of Distributed Control and Embedded Systems focuses on the design of special control and scheduling algorithms based on system structural properties as well as on analysis of the influence of induced time-delay on systems performances. It treats the optimal design of distributed and embedded control systems (DCESs) with respect to communication and calculation-resource constraints, quantization aspects, and potential time-delays induced by the associated communication and calculation model. Particular emphasis is put on optimal control signal scheduling based on the system state. In order to render this complex optimization problem feasible in real time, a time decomposition is based on periodicity induced by the static scheduling is operated. The authors present a co-design approach which subsumes the synthesis of the optimal control laws and the generation of an optimal schedule of control signals on real-time networks as well as the execution of control tasks on a single processor. The authors also operate a control structure modification or a control switching based on a thorough analysis of the influence of the induced time-delay system influence on stability and system performance in order to optimize DCES performance in case of calculation and communication resource limitations. Although the richness and variety of classes of DCES preclude a completely comprehensive treatment or a single “best” method of approaching them all, this co-design approach has the best chance of rendering this problem feasible and finding the optimal or some sub-optimal solution. The text is rounded out with references to such applications as car suspension and unmanned vehicles. Optimal Design of Distributed Control and Embedded Systems will be of most interest to academic researchers working on the mathematical theory of DCES but the wide range of environments in which they are used also promotes the relevance of the text for control practitioners working in the avionics, automotive, energy-production, space exploration and many other industries.
Author: University of Michigan
Publisher: UM Libraries
Published: 1999
Total Pages: 212
ISBN-13:
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Author:
Publisher:
Published: 1995
Total Pages: 464
ISBN-13:
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Publisher:
Published: 1982
Total Pages: 200
ISBN-13:
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