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In recent years, the scope of energy planning has been broadened to include a variety of additional considerations such as socioeconomic and environ mental impacts. The fundamental purpose of energy planning is to formu late policy. Policy must be formulated in response to the interests which that policy would affect. A planning model called policy programming is developed in this work from basic concepts of hierarchical system theory and input-output analysis. The model is used in planning for energy park development in a specific region. I wish to acknowledge gratefully the suggestions of Thomas L. Saaty and Ronald Miller who commented at length on various drafts of the manu script. Support for this work was provided in part by the U. S. Energy Research and Development Administration, the U. S. Federal Energy Administration, and the University of Pennsylvania Energy Center. Peter Blair December, 1977 Contents Preface v PART ONE: SYSTEMS THEORY AND ENERGY PLANNING 1. Introduction 1. 1 Energy planning 3 1. 2 General approach to the problem 6 1. 3 Principal significance 7 2. Energy systeDM and planning 2. 1 The energy planning problem 10 2. 2 Energy planning and multiple objectives 14 2. 3 Structure of policy-making systems 18 2. 4 Energy-environment systems 21 2. 5 The eigenvalue prioritization model 27 3. Policy programming for multiobjective energy planning 3. 1 Introduction 38 3. 2 Definitions 38 3. 3 The modified hierarchical approach 41 3. 4 Goal programming 51 3.
This text takes a broad view of multiobjective programming, emphasizing the methods most useful for continuous problems. It reviews methods in the context of public decision-making problems. 1978 edition.
This textbook is a second edition of Evolutionary Algorithms for Solving Multi-Objective Problems, significantly expanded and adapted for the classroom. The various features of multi-objective evolutionary algorithms are presented here in an innovative and student-friendly fashion, incorporating state-of-the-art research. The book disseminates the application of evolutionary algorithm techniques to a variety of practical problems. It contains exhaustive appendices, index and bibliography and links to a complete set of teaching tutorials, exercises and solutions.
The first comprehensive book to uniquely combine the three fields of systems engineering, operations/production systems, and multiple criteria decision making/optimization Systems engineering is the art and science of designing, engineering, and building complex systems—combining art, science, management, and engineering disciplines. Operations and Production Systems with Multiple Objectives covers all classical topics of operations and production systems as well as new topics not seen in any similiar textbooks before: small-scale design of cellular systems, large-scale design of complex systems, clustering, productivity and efficiency measurements, and energy systems. Filled with completely new perspectives, paradigms, and robust methods of solving classic and modern problems, the book includes numerous examples and sample spreadsheets for solving each problem, a solutions manual, and a book companion site complete with worked examples and supplemental articles. Operations and Production Systems with Multiple Objectives will teach readers: How operations and production systems are designed and planned How operations and production systems are engineered and optimized How to formulate and solve manufacturing systems problems How to model and solve interdisciplinary and systems engineering problems How to solve decision problems with multiple and conflicting objectives This book is ideal for senior undergraduate, MS, and PhD graduate students in all fields of engineering, business, and management as well as practitioners and researchers in systems engineering, operations, production, and manufacturing.
The Advanced Research Institute (ARI) on "The Application of Systems Science to Energy Policy Planning" was held under the auspices of the NATO Special Programme Panel on Systems Science in collaboration with the National Center for Analysis of Energy Sys tems, Brookhaven National Laboratory, USA, as a part of the NATO Science Committee's continuous effort to promote the advancement of science through international cooperation. Advanced Research Institutes are sponsored by the NATO Science Committee for the purposes of bringing together senior scientists to seek consensus on an assessment of the present state of knowl edge on a specific topic and to make recommendations for future research directions. Meetings are structured to encourage inten sive group discussion. Invitees are carefully selected so that the group as a whole will contain the experience and expertise neces sary to make the conclusions valid and significant. A final report is published presenting the various viewpoints and conclusions. The NATO Systems Science Panel noted that the systems approach is increasingly being applied to energy policy analysis and plan ning in both public and private sectors of national economies. Consequently, it seemed appropriate at this time to bring together experts to review and evaluate recent experience, in order to iden tify strengths and weaknesses in current prac tice, and to make recommendations for research directions.
This second volume of the Handbook presents professional surveys of all the important topics in urban economics. The first section contains 6 surveys on locational analysis, the second, 5 surveys of specific urban markets, and the third part presents 5 surveys of government policy issues. The book brings together exhaustive research by distinguished scholars from many countries. It is the only complete survey volume of urban economics and should serve as a reference volume to scholars and graduate students for many years. For more information on the Handbooks in Economics series, please see our home page on http://www.elsevier.nl/locate/hes--