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Control of Discrete-event Systems provides a survey of the most important topics in the discrete-event systems theory with particular focus on finite-state automata, Petri nets and max-plus algebra. Coverage ranges from introductory material on the basic notions and definitions of discrete-event systems to more recent results. Special attention is given to results on supervisory control, state estimation and fault diagnosis of both centralized and distributed/decentralized systems developed in the framework of the Distributed Supervisory Control of Large Plants (DISC) project. Later parts of the text are devoted to the study of congested systems though fluidization, an over approximation allowing a much more efficient study of observation and control problems of timed Petri nets. Finally, the max-plus algebraic approach to the analysis and control of choice-free systems is also considered. Control of Discrete-event Systems provides an introduction to discrete-event systems for readers that are not familiar with this class of systems, but also provides an introduction to research problems and open issues of current interest to readers already familiar with them. Most of the material in this book has been presented during a Ph.D. school held in Cagliari, Italy, in June 2011.
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At the crossroads of artificial intelligence, manufacturing engineering, operational research and industrial engineering and management, multi-agent based production planning and control is an intelligent and industrially crucial technology with increasing importance. This book provides a complete overview of multi-agent based methods for today’s competitive manufacturing environment, including the Job Shop Manufacturing and Re-entrant Manufacturing processes. In addition to the basic control and scheduling systems, the author also highlights advance research in numerical optimization methods and wireless sensor networks and their impact on intelligent production planning and control system operation. Enables students, researchers and engineers to understand the fundamentals and theories of multi-agent based production planning and control Written by an author with more than 20 years’ experience in studying and formulating a complete theoretical system in production planning technologies Fully illustrated throughout, the methods for production planning, scheduling and controlling are presented using experiments, numerical simulations and theoretical analysis Comprehensive and concise, Multi-Agent Based Production Planning and Control is aimed at the practicing engineer and graduate student in industrial engineering, operational research, and mechanical engineering. It is also a handy guide for advanced students in artificial intelligence and computer engineering.
Evolving technologies in mass production have led to the development of advanced techniques in the field of manufacturing. These technologies can quickly and effectively respond to various market changes, necessitating processes that focus on small batches of multiple products rather than large, single-product lines. Formal Methods in Manufacturing Systems: Recent Advances explores this shifting paradigm through an investigation of contemporary manufacturing techniques and formal methodologies that strive to solve a variety of issues arising from a market environment that increasingly favors flexible systems over traditional ones. This book will be of particular use to industrial engineers and students of the field who require a detailed understanding of current trends and developments in manufacturing tools. This book is part of the Advances in Civil and Industrial Engineering series collection.
TQM, Reengineering,Theory of Constraints, JIT,Six Sigma, Lean Manufacturing . . . These are just some of the methods that, overthe past five decades, have promised to transformany manufacturing firm into a lean, mean, moneymakingmachine. While each incorporates certainfundamental truths, strengths, and benefits, theyare not panaceas. Nor do they necessarily providemuch-needed insight into the science that underliesfactory performance. James Ignizio, Ph.D., an internationally recognizedperformance optimization expert, believesthat only a balanced approach will provide thesignificant and sustainable improvement requiredof firms who will survive and prosper in thetwenty-first century. In this breakthrough guide, Dr. Ignizio picks upwhere such concepts as Six Sigma and Lean Manufacturingleave off to provide you with a holistic,three-dimensional approach to mastering the artand science of manufacturing. Focusing on the three primary enemiesof factory performance—complexity, variability,and lackluster leadership—Optimizing FactoryPerformance cuts to the heart of the problem ofless-than-world-class performance and demonstrateshow those enemies manifest themselves incompanies across manufacturing sectors. Ignizioalso explores the insidious effect company politicsand flagging commitment to manufacturing performancehave on competitiveness. Emphasizing the all-important, often overlookedthird dimension of manufacturing—factoryprotocols—Ignizio describes the types of strategicand tactical changes to physical plant and operatingprocedures any company can make to achieveperformance improvements. In addition, he arms youwith powerful, original metrics for measuring andcomparing factory performance, as well as a set ofinteractive simulation models, available online atwww.mhprofessional.com/ignizio. Running throughout the book is an oftenamusing, always instructive account of the fictionalhigh-tech firm, Muddle, Inc., which helps supportthe concepts discussed in the real world of manufacturing,while reinforcing key lessons learned. Read Optimizing Factory Performance and findout how to transform your organization into the kindof fast, agile manufacturer that delivers the rightproducts to the right customers at the right time—every time.