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Included are an in depth analysis of power  flow basics, proper justification of Stott's decoupled method,  observability theory and matrix solution methods. In terms of  practical application, topics such as bad data analysis, combinatorial  bad data analysis and multiple snap shot estimation are covered. The  book caters both to the specialist as well as the newcomer to the  field.    State estimation will play a crucial role in the emerging scenario of  a deregulated power industry. Many market decisions will be based on  knowing the present state of the system accurately.    State Estimation in Electric Power Systems: A Generalized  Approach crystallizes thirty years of WLS state estimation theory  and practice in power systems and focuses on techniques adopted by  state estimation developers worldwide. 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This change was driven by the large disparities in electricity tariffs across regions, by technological developments that make it possible for small producers to compete with large ones, and by a widely held belief that competition will be beneficial in a broad sense. All of this together with the political will to push through the necessary legislative reforms has created a climate conducive to restructuring in the electric power industry. Consequently, since the beginning of this decade dramatic changes have taken place in an ever-increasing list of nations, from the pioneering moves in the United Kingdom, Chile and Scandinavia, to today's highly fluid power industry throughout North and South America, as well as in the European Community. The drive to restructure and take advantage of the potential economic benefits has, in our view, forced the industry to take actions and make choices at a hurried pace, without the usual deliberation and thorough analysis of possible implications. 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Since then, hundreds of papers dealing with various aspects of the Field Orientation Principle have appeared every year in the technical literature, and numerous commercial high-performance a. c. drives based on this principle have been developed. The term vector control is often used with regard to these systems. Today, it seems certain that almost all d. c. industrial drives will be ousted in the foreseeable future, to be, in major part, superseded by a. c. drive systems with vector controlled induction motors. This transition has already been taking place in industries of developed countries. Vector controlled a. c. drives have been proven capable of even better dynamic performance than d. c. drive systems, because of higher allowable speeds and shorter time constants of a. c. motors. It should be mentioned that the Field Orientation Principle can be used in control not only of induction (asynchronous) motors, but of all kinds of synchronous motors as well. 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Industrial Energy Management: Principles and Applications is  written both as a textbook for university courses in engineering and  as a work of reference for professionals in energy management. Readers  are assumed to have a basic knowledge of thermodynamics, heat and mass  transfer, electric systems and power electronics, as well as computer  programming.    This book can be used not only by technicians involved in the field of  energy management but also by managers who may find it a useful tool  for understanding investment proposals and even a spur to solicit new  ones.    Industrial Energy Management: Principles and Applications  consists of 21 chapters concerning general principles of energy  transformation and energy sources, transformation plants such as  electrical substantions and boiler plants, cogeneration plants,  electrical and thermal fluid distribution lines, facilities plants  such as pumps and fans, air compressors, cooling, HVAC and lighting  systems, heat recovery equipment, principles of energy auditing and  accounting by using computers, correlation between energy and waste,  education in the field. 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