Handbook of Networks in Power Systems II

Handbook of Networks in Power Systems II
Author: Alexey Sorokin
Publisher: Springer Science & Business Media
Total Pages: 221
Release: 2012-03-02
Genre: Mathematics
ISBN: 3642234054

Energy has been an inevitable component of human lives for decades. Recent rapid developments in the area require analyzing energy systems not as independent components but rather as connected interdependent networks. The Handbook of Networks in Power Systems includes the state-of-the-art developments that occurred in the power systems networks, in particular gas, electricity, liquid fuels, freight networks, as well as their interactions. The book is separated into two volumes with three sections, where one scientific paper or more are included to cover most important areas of networks in power systems. The first volume covers topics arising in electricity network, in particular electricity markets, smart grid, network expansion, as well as risk management. The second volume presents problems arising in gas networks; such as scheduling and planning of natural gas systems, pricing, as well as optimal location of gas supply units. In addition, the second volume covers the topics of interactions between energy networks. Each subject is identified following the activity on the domain and the recognition of each subject as an area of research. The scientific papers are authored by world specialists on the domain and present either state-of-the-arts reviews or scientific developments.

Handbook of Networks in Power Systems I

Handbook of Networks in Power Systems I
Author: Alexey Sorokin
Publisher: Springer Science & Business Media
Total Pages: 583
Release: 2012-03-01
Genre: Mathematics
ISBN: 3642231926

Energy has been an inevitable component of human lives for decades. Recent rapid developments in the area require analyzing energy systems not as independent components but rather as connected interdependent networks. The Handbook of Networks in Power Systems includes the state-of-the-art developments that occurred in the power systems networks, in particular gas, electricity, liquid fuels, freight networks, as well as their interactions. The book is separated into two volumes with three sections, where one scientific paper or more are included to cover most important areas of networks in power systems. The first volume covers topics arising in electricity network, in particular electricity markets, smart grid, network expansion, as well as risk management. The second volume presents problems arising in gas networks; such as scheduling and planning of natural gas systems, pricing, as well as optimal location of gas supply units. In addition, the second volume covers the topics of interactions between energy networks. Each subject is identified following the activity on the domain and the recognition of each subject as an area of research. The scientific papers are authored by world specialists on the domain and present either state-of-the-arts reviews or scientific developments.

Handbook of Networks in Power Systems II

Handbook of Networks in Power Systems II
Author: Alexey Sorokin
Publisher: Springer Science & Business Media
Total Pages: 221
Release: 2012-03-02
Genre: Mathematics
ISBN: 3642234062

Energy has been an inevitable component of human lives for decades. Recent rapid developments in the area require analyzing energy systems not as independent components but rather as connected interdependent networks. The Handbook of Networks in Power Systems includes the state-of-the-art developments that occurred in the power systems networks, in particular gas, electricity, liquid fuels, freight networks, as well as their interactions. The book is separated into two volumes with three sections, where one scientific paper or more are included to cover most important areas of networks in power systems. The first volume covers topics arising in electricity network, in particular electricity markets, smart grid, network expansion, as well as risk management. The second volume presents problems arising in gas networks; such as scheduling and planning of natural gas systems, pricing, as well as optimal location of gas supply units. In addition, the second volume covers the topics of interactions between energy networks. Each subject is identified following the activity on the domain and the recognition of each subject as an area of research. The scientific papers are authored by world specialists on the domain and present either state-of-the-arts reviews or scientific developments.

Handbook of Power Systems II

Handbook of Power Systems II
Author: Steffen Rebennack
Publisher: Springer Science & Business Media
Total Pages: 504
Release: 2010-08-26
Genre: Mathematics
ISBN: 3642126863

Energy is one of the world`s most challenging problems, and power systems are an important aspect of energy related issues. This handbook contains state-of-the-art contributions on power systems modeling and optimization. The book is separated into two volumes with six sections, which cover the most important areas of energy systems. The first volume covers the topics operations planning and expansion planning while the second volume focuses on transmission and distribution modeling, forecasting in energy, energy auctions and markets, as well as risk management. The contributions are authored by recognized specialists in their fields and consist in either state-of-the-art reviews or examinations of state-of-the-art developments. The articles are not purely theoretical, but instead also discuss specific applications in power systems.

Power Systems Stability Handbook

Power Systems Stability Handbook
Author: Anthony J. Pansini
Publisher: Prentice Hall
Total Pages: 280
Release: 1992
Genre: Technology & Engineering
ISBN:

The increased use of power lines to interconnect multiple generating sources into a pool or grid has led to increased concern for preventing vulnerability to stability problems, in which failure of a single line can ultimately lead to the unanticipated blackout of an entire area served by a particular grid. This comprehensive reference will guide you through every aspect of improving the reliability and stability of electric transmission systems, so that the likelihood of such transmission failures can be significantly reduced. You'll find detailed coverage of the technical factors which must be considered in reducing the risk of failures, as well as hard-to-find information, such as the effect of high-speed breakers on stability, how to calculate unbalanced faults, multi-machine stability, and power factor control. The written presentation is highlighted with numerous diagrams and illustrations to facilitate understanding of concepts presented.

Springer Handbook of Power Systems

Springer Handbook of Power Systems
Author: Konstantin O. Papailiou
Publisher: Springer Nature
Total Pages: 1283
Release: 2021-04-12
Genre: Technology & Engineering
ISBN: 981329938X

This handbook offers a comprehensive source for electrical power professionals. It covers all elementary topics related to the design, development, operation and management of power systems, and provides an insight from worldwide key players in the electrical power systems industry. Edited by a renowned leader and expert in Power Systems, the book highlights international professionals’ longstanding experiences and addresses the requirements of practitioners but also of newcomers in this field in finding a solution for their problems. The structure of the book follows the physical structure of the power system from the fundamentals through components and equipment to the overall system. In addition the handbook covers certain horizontal matters, for example "Energy fundamentals", "High voltage engineering", and "High current and contact technology" and thus intends to become the major one-stop reference for all issues related to the electrical power system.

Handbook of Power Systems I

Handbook of Power Systems I
Author: Steffen Rebennack
Publisher: Springer
Total Pages: 494
Release: 2010-12-02
Genre: Mathematics
ISBN: 9783642024948

Energy is one of the world`s most challenging problems, and power systems are an important aspect of energy related issues. This handbook contains state-of-the-art contributions on power systems modeling and optimization. The book is separated into two volumes with six sections, which cover the most important areas of energy systems. The first volume covers the topics operations planning and expansion planning while the second volume focuses on transmission and distribution modeling, forecasting in energy, energy auctions and markets, as well as risk management. The contributions are authored by recognized specialists in their fields and consist in either state-of-the-art reviews or examinations of state-of-the-art developments. The articles are not purely theoretical, but instead also discuss specific applications in power systems.

Handbook of Power System Engineering

Handbook of Power System Engineering
Author: Yoshihide Hase
Publisher: John Wiley & Sons
Total Pages: 574
Release: 2007-06-13
Genre: Technology & Engineering
ISBN: 0470033665

Maintaining the reliable and efficient generation, transmission and distribution of electrical power is of the utmost importance in a world where electricity is the inevitable means of energy acquisition, transportation, and utilization, and the principle mode of communicating media. Our modern society is entirely dependent on electricity, so problems involving the continuous delivery of power can lead to the disruption and breakdown of vital economic and social infrastructures. This book brings together comprehensive technical information on power system engineering, covering the fundamental theory of power systems and their components, and the related analytical approaches. Key features: Presents detailed theoretical explanations of simple power systems as an accessible basis for understanding the larger, more complex power systems. Examines widely the theory, practices and implementation of several power sub-systems such as generating plants, over-head transmission lines and power cable lines, sub-stations, including over-voltage protection, insulation coordination as well as power systems control and protection. Discusses steady-state and transient phenomena from basic power-frequency range to lightning- and switching-surge ranges, including system faults, wave-form distortion and lower-order harmonic resonance. Explains the dynamics of generators and power systems through essential mathematical equations, with many numerical examples. Analyses the historical progression of power system engineering, in particular the descriptive methods of electrical circuits for power systems. Written by an author with a wealth of experience in the field, both in industry and academia, the Handbook of Power System Engineering provides a single reference work for practicing engineers, researchers and those working in industry that want to gain knowledge of all aspects of power systems. It is also valuable for advanced students taking courses or modules in power system engineering.

Power Systems

Power Systems
Author: Leonard L. Grigsby
Publisher: CRC Press
Total Pages: 462
Release: 2007-05-30
Genre: Science
ISBN: 1420009230

Part of the second edition of The Electric Power Engineering Handbook, Power Systems offers focused and detailed coverage of all aspects concerning power system analysis and simulation, transients, planning, reliability, and power electronics. Contributed by worldwide leaders under the guidance of one of the world's most respected and accomplished

Handbook of Optimization in Electric Power Distribution Systems

Handbook of Optimization in Electric Power Distribution Systems
Author: Mariana Resener
Publisher: Springer Nature
Total Pages: 382
Release: 2020-02-24
Genre: Business & Economics
ISBN: 3030361152

This handbook gathers state-of-the-art research on optimization problems in power distribution systems, covering classical problems as well as the challenges introduced by distributed power generation and smart grid resources. It also presents recent models, solution techniques and computational tools to solve planning problems for power distribution systems and explains how to apply them in distributed and variable energy generation resources. As such, the book therefore is a valuable tool to leverage the expansion and operation planning of electricity distribution networks.