Electric Power Planning for Regulated and Deregulated Markets

Electric Power Planning for Regulated and Deregulated Markets

Author: Arthur Mazer

Publisher: John Wiley & Sons

Published: 2007-06-11

Total Pages: 335

ISBN-13: 0470130563

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As the industry environment transforms from a completely regulated setting to a broader, deregulated marketplace, new market participants must understand planning and operations of power systems to effectively participate in markets. This industry overview provides a description of utility operations and traditional planning, and then explains asset management, investment analysis, and risk management within the context of a market environment. Written to provide a broad, working knowledge of the industry, Electric Power Planning for Regulated and Deregulated Markets: Includes descriptions of generation and transmission network equipment Provides an overview of the regulatory framework, system design and systems operations for ensuring reliable delivery of power Presents system planning across different time horizons with the objective of minimizing power production costs Explains the principles and architecture of a market environment coupling operational imperatives with financial transactions Addresses approaches of various participants, including power producers, retailers, and integrated energy companies toward bidding in day ahead markets, managing risks in forward markets, portfolio development and investment analysis Provides numerous examples addressing cost minimization, price forecasting, contract valuation, portfolio risk measurement and others Examines past news events and explains what went wrong at Three Mile Island, the Northeast blackout of 2003, and the California energy crisis This is an ideal reference for professionals in the public and private power service sectors such as engineers, lawyers, systems specialists, economists, financial analysts, policy analysts, and applied mathematicians.


Economic Market Design and Planning for Electric Power Systems

Economic Market Design and Planning for Electric Power Systems

Author: James A. Momoh

Publisher: John Wiley & Sons

Published: 2009-11-19

Total Pages: 311

ISBN-13: 0470529156

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Discover cutting-edge developments in electric power systems Stemming from cutting-edge research and education activities in the field of electric power systems, this book brings together the knowledge of a panel of experts in economics, the social sciences, and electric power systems. In ten concise and comprehensible chapters, the book provides unprecedented coverage of the operation, control, planning, and design of electric power systems. It also discusses: A framework for interdisciplinary research and education Modeling electricity markets Alternative economic criteria and proactive planning for transmission investment in deregulated power systems Payment cost minimization with demand bids and partial capacity cost compensations for day-ahead electricity auctions Dynamic oligopolistic competition in an electric power network and impacts of infrastructure disruptions Reliability in monopolies and duopolies Building an efficient, reliable, and sustainable power system Risk-based power system planning integrating social and economic direct and indirect costs Models for transmission expansion planning based on reconfiguration capacitor switching Next-generation optimization for electric power systems Most chapters end with a bibliography, closing remarks, conclusions, or future work. Economic Market Design and Planning for Electric Power Systems is an indispensable reference for policy-makers, executives and engineers of electric utilities, university faculty members, and graduate students and researchers in control theory, electric power systems, economics, and the social sciences.


Markets for Power

Markets for Power

Author: Paul L. Joskow

Publisher: MIT Press (MA)

Published: 1988-08-01

Total Pages: 269

ISBN-13: 9780262600187

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This timely study evaluates four generic proposals for allowing free market forces toreplace government regulation in the electric power industry and concludes that none of thederegulation alternatives considered represents a panacea for the performance failures associatedwith things as they are now. It proposes a balanced program of regulatory reform and deregulationthat promises to improve industry performance in the short run, resolve uncertainties about thecosts and benefits of deregulation, and positions the industry for more extensive deregulation inthe long run should interim experimentation with deregulation, structural, and regulatory reformsmake it desirable.The book integrates modern microeconomic theory with a comprehensive analysis ofthe economic, technical, and institutional characteristics of modern electrical power systems. Itemphasizes that casual analogies to successful deregulation efforts in other sectors of the economyare an inadequate and potentially misleading basis for public policy in the electric power industry,which has economic and technical characteristics that are quite different from those in otherderegulated industries.Paul L. Joskow is Professor of Economics at MIT, author of ControllingHospital Costs (MIT Press 1981) and coauthor with Martin L. Baughman and Dilip P. Kamat of ElectricPower in the United States (MIT Press 1979). Richard Schmalensee, also at MIT, is Professor ofApplied Economics, author of The Economics of Advertising and The Control of Natural Monopolies, andeditor of The MIT Press Series, Regulation of Economic Activity.


Electric Choices

Electric Choices

Author: Andrew N. Kleit

Publisher: Rowman & Littlefield

Published: 2007

Total Pages: 260

ISBN-13: 9780742548763

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The electricity industry, one of the largest and most vital sectors of the U.S. economy, has changed dramatically in recent years. After being heavily regulated for more than a century by authorities at all levels, deregulation is taking center stage, allowing for enormous efficiency gains. Electric Choices explores the difficult questions surrounding deregulation and urges Americans to continue the transition to a market-based model.


Electricity Generation and Transmission Planning in Deregulated Power Markets

Electricity Generation and Transmission Planning in Deregulated Power Markets

Author: Yang He

Publisher:

Published: 2007

Total Pages: 302

ISBN-13:

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This dissertation addresses the long-term planning of power generation and transmission facilities in a deregulated power market. Three models with increasing complexities are developed, primarily for investment decisions in generation and transmission capacity. The models are presented in a two-stage decision context where generation and transmission capacity expansion decisions are made in the first stage, while power generation and transmission service fees are decided in the second stage. Uncertainties that exist in the second stage affect the capacity expansion decisions in the first stage. The first model assumes that the electric power market is not constrained by transmission capacity limit. The second model, which includes transmission constraints, considers the interactions between generation firms and the transmission network operator. The third model assumes that the generation and transmission sectors make capacity investment decisions separately. These models result in Nash-Cournot equilibrium among the unregulated generation firms, while the regulated transmission network operator supports the competition among generation firms. Several issues in the deregulated electric power market can be studied with these models such as market powers of generation firms and transmission network operator, uncertainties of the future market, and interactions between the generation and transmission sectors. Results deduced from the developed models include (a) regulated transmission network operator will not reserve transmission capacity to gain extra profits; instead, it will make capacity expansion decisions to support the competition in the generation sector; (b) generation firms will provide more power supplies when there is more demand; (c) in the presence of future uncertainties, the generation firms will add more generation capacity if the demand in the future power market is expected to be higher; and (d) the transmission capacity invested by the transmission network operator depends on the characteristic of the power market and the topology of the transmission network. Also, the second model, which considers interactions between generation and transmission sectors, yields higher social welfare in the electric power market, than the third model where generation firms and transmission network operator make investment decisions separately.


The End of a Natural Monopoly

The End of a Natural Monopoly

Author: Daniel H. Cole

Publisher: Routledge

Published: 2003-07-17

Total Pages: 243

ISBN-13: 1135697019

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This book addresses the fundamental issues underlying the debate over electric power regulation and deregulation. After decades of the presumption that the electric power industry was a natural monopoly, recent times have seen a trend of deregulation followed by panicked re-regulation. This important book critically analyses this controversial area from a legal and economic perspective.


Designing Competitive Electricity Markets

Designing Competitive Electricity Markets

Author: Hung-po Chao

Publisher: Springer Science & Business Media

Published: 2013-12-01

Total Pages: 213

ISBN-13: 1461555477

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The authors are prominent economists, operation researchers, and engineers who have been instrumental in the development of the conceptual framework for electric power restructuring both in the United States and in other countries. Rather than espousing a particular market design for the industry's future, each author focuses on an important issue or set of issues and tries to frame the questions for designing electricity markets using an international perspective. The book focuses on the economic and technical questions important in understanding the industry's long-term development rather than providing immediate answers for the current political debates on industry competition.


Market Operations in Electric Power Systems

Market Operations in Electric Power Systems

Author: Mohammad Shahidehpour

Publisher: John Wiley & Sons

Published: 2003-05-28

Total Pages: 552

ISBN-13: 0471463949

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An essential overview of post-deregulation market operations inelectrical power systems Until recently the U.S. electricity industry was dominated byvertically integrated utilities. It is now evolving into adistributive and competitive market driven by market forces andincreased competition. With electricity amounting to a $200 billionper year market in the United States, the implications of thisrestructuring will naturally affect the rest of the world. Why is restructuring necessary? What are the components ofrestructuring? How is the new structure different from the oldmonopoly? How are the participants strategizing their options tomaximize their revenues? What are the market risks and how are theyevaluated? How are interchange transactions analyzed and approved?Starting with a background sketch of the industry, this hands-onreference provides insights into the new trends in power systemsoperation and control, and highlights advanced issues in thefield. Written for both technical and nontechnical professionals involvedin power engineering, finance, and marketing, this must-haveresource discusses: * Market structure and operation of electric power systems * Load and price forecasting and arbitrage * Price-based unit commitment and security constrained unitcommitment * Market power analysis and game theory applications * Ancillary services auction market design * Transmission pricing and congestion Using real-world case studies, this timely survey offers engineers,consultants, researchers, financial managers, university professorsand students, and other professionals in the industry acomprehensive review of electricity restructuring and how itsradical effects will shape the market.


Deregulation, Innovation and Market Liberalization

Deregulation, Innovation and Market Liberalization

Author: L. Lynne Kiesling

Publisher: Routledge

Published: 2008-09-03

Total Pages: 200

ISBN-13: 1135979812

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This book delves into regulatory and technological change affecting the electricity industry and provides a previously unexplored synthesis of new institutional economics, experimental economics, evolutionary economics, and network theory.


Uncertainty in the Electric Power Industry

Uncertainty in the Electric Power Industry

Author: Christoph Weber

Publisher: Springer Science & Business Media

Published: 2006-01-06

Total Pages: 312

ISBN-13: 0387230483

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Around the world, liberalization and privatization in the electricity industry have lead to increased competition among utilities. At the same time, utilities are now exposed more than ever to risk and uncertainties, which they cannot pass on to their customers through price increases as in a regulated environment. Especially electricity-generating companies have to face volatile wholesale prices, fuel price uncertainty, limited long-term hedging possibilities and huge, to a large extent, sunk investments. In this context, Uncertainty in the Electric Power Industry: Methods and Models for Decision Support aims at an integrative view on the decision problems that power companies have to tackle. It systematically examines the uncertainties power companies are facing and develops models to describe them - including an innovative approach combining fundamental and finance models for price modeling. The optimization of generation and trading portfolios under uncertainty is discussed with particular focus on CHP and is linked to risk management. Here the concept of integral earnings at risk is developed to provide a theoretically sound combination of value at risk and profit at risk approaches, adapted to real market structures and market liquidity. Also methods for supporting long-term investment decisions are presented: technology assessment based on experience curves and operation simulation for fuel cells and a real options approach with endogenous electricity prices.