Author: IEEE
Publisher:
ISBN:
Category :
Languages : en
Pages : 120
Book Description
Industrial & Commercial Power System Technical Conference
IEEE Industrial & Commercial Power Systems Technical Conference
Conference Record, Industrial & Commercial Power Systems Technical Conference, 1989
Author:
Publisher:
ISBN:
Category : Commercial buildings
Languages : en
Pages : 164
Book Description
Publisher:
ISBN:
Category : Commercial buildings
Languages : en
Pages : 164
Book Description
IEEE Conference Record of ... Industrial and Commercial Power Systems Technical Conference
Author:
Publisher:
ISBN:
Category : Commercial buildings
Languages : en
Pages : 278
Book Description
Publisher:
ISBN:
Category : Commercial buildings
Languages : en
Pages : 278
Book Description
IEEE Conference Record of the Industrial and Commercial Power Systems Technical Conference
Author:
Publisher:
ISBN:
Category : Commercial buildings
Languages : en
Pages : 120
Book Description
Publisher:
ISBN:
Category : Commercial buildings
Languages : en
Pages : 120
Book Description
IEEE Conference Record of 1976 Industrial and Commercial Power Systems Technical Conference
Author:
Publisher:
ISBN:
Category : Electric power distribution
Languages : en
Pages : 170
Book Description
Publisher:
ISBN:
Category : Electric power distribution
Languages : en
Pages : 170
Book Description
IEEE Conference Record of 1975 Industrial and Commercial Power Systems Technical Conference
Author:
Publisher:
ISBN:
Category : Electric power distribution
Languages : en
Pages : 160
Book Description
Publisher:
ISBN:
Category : Electric power distribution
Languages : en
Pages : 160
Book Description
Conference Record
Author:
Publisher:
ISBN:
Category : Commercial buildings
Languages : en
Pages : 318
Book Description
Publisher:
ISBN:
Category : Commercial buildings
Languages : en
Pages : 318
Book Description
Power Quality
Author: Bhim Singh
Publisher: John Wiley & Sons
ISBN: 1118922050
Category : Technology & Engineering
Languages : en
Pages : 596
Book Description
Maintaining a stable level of power quality in the distribution network is a growing challenge due to increased use of power electronics converters in domestic, commercial and industrial sectors. Power quality deterioration is manifested in increased losses; poor utilization of distribution systems; mal-operation of sensitive equipment and disturbances to nearby consumers, protective devices, and communication systems. However, as the energy-saving benefits will result in increased AC power processed through power electronics converters, there is a compelling need for improved understanding of mitigation techniques for power quality problems. This timely book comprehensively identifies, classifies, analyses and quantifies all associated power quality problems, including the direct integration of renewable energy sources in the distribution system, and systematically delivers mitigation techniques to overcome these problems. Key features: • Emphasis on in-depth learning of the latest topics in power quality extensively illustrated with waveforms and phasor diagrams. • Essential theory supported by solved numerical examples, review questions, and unsolved numerical problems to reinforce understanding. • Companion website contains solutions to unsolved numerical problems, providing hands-on experience. Senior undergraduate and graduate electrical engineering students and instructors will find this an invaluable resource for education in the field of power quality. It will also support continuing professional development for practicing engineers in distribution and transmission system operators.
Publisher: John Wiley & Sons
ISBN: 1118922050
Category : Technology & Engineering
Languages : en
Pages : 596
Book Description
Maintaining a stable level of power quality in the distribution network is a growing challenge due to increased use of power electronics converters in domestic, commercial and industrial sectors. Power quality deterioration is manifested in increased losses; poor utilization of distribution systems; mal-operation of sensitive equipment and disturbances to nearby consumers, protective devices, and communication systems. However, as the energy-saving benefits will result in increased AC power processed through power electronics converters, there is a compelling need for improved understanding of mitigation techniques for power quality problems. This timely book comprehensively identifies, classifies, analyses and quantifies all associated power quality problems, including the direct integration of renewable energy sources in the distribution system, and systematically delivers mitigation techniques to overcome these problems. Key features: • Emphasis on in-depth learning of the latest topics in power quality extensively illustrated with waveforms and phasor diagrams. • Essential theory supported by solved numerical examples, review questions, and unsolved numerical problems to reinforce understanding. • Companion website contains solutions to unsolved numerical problems, providing hands-on experience. Senior undergraduate and graduate electrical engineering students and instructors will find this an invaluable resource for education in the field of power quality. It will also support continuing professional development for practicing engineers in distribution and transmission system operators.
Terrorism and the Electric Power Delivery System
Author: National Research Council
Publisher: National Academies Press
ISBN: 0309114047
Category : Political Science
Languages : en
Pages : 165
Book Description
The electric power delivery system that carries electricity from large central generators to customers could be severely damaged by a small number of well-informed attackers. The system is inherently vulnerable because transmission lines may span hundreds of miles, and many key facilities are unguarded. This vulnerability is exacerbated by the fact that the power grid, most of which was originally designed to meet the needs of individual vertically integrated utilities, is being used to move power between regions to support the needs of competitive markets for power generation. Primarily because of ambiguities introduced as a result of recent restricting the of the industry and cost pressures from consumers and regulators, investment to strengthen and upgrade the grid has lagged, with the result that many parts of the bulk high-voltage system are heavily stressed. Electric systems are not designed to withstand or quickly recover from damage inflicted simultaneously on multiple components. Such an attack could be carried out by knowledgeable attackers with little risk of detection or interdiction. Further well-planned and coordinated attacks by terrorists could leave the electric power system in a large region of the country at least partially disabled for a very long time. Although there are many examples of terrorist and military attacks on power systems elsewhere in the world, at the time of this study international terrorists have shown limited interest in attacking the U.S. power grid. However, that should not be a basis for complacency. Because all parts of the economy, as well as human health and welfare, depend on electricity, the results could be devastating. Terrorism and the Electric Power Delivery System focuses on measures that could make the power delivery system less vulnerable to attacks, restore power faster after an attack, and make critical services less vulnerable while the delivery of conventional electric power has been disrupted.
Publisher: National Academies Press
ISBN: 0309114047
Category : Political Science
Languages : en
Pages : 165
Book Description
The electric power delivery system that carries electricity from large central generators to customers could be severely damaged by a small number of well-informed attackers. The system is inherently vulnerable because transmission lines may span hundreds of miles, and many key facilities are unguarded. This vulnerability is exacerbated by the fact that the power grid, most of which was originally designed to meet the needs of individual vertically integrated utilities, is being used to move power between regions to support the needs of competitive markets for power generation. Primarily because of ambiguities introduced as a result of recent restricting the of the industry and cost pressures from consumers and regulators, investment to strengthen and upgrade the grid has lagged, with the result that many parts of the bulk high-voltage system are heavily stressed. Electric systems are not designed to withstand or quickly recover from damage inflicted simultaneously on multiple components. Such an attack could be carried out by knowledgeable attackers with little risk of detection or interdiction. Further well-planned and coordinated attacks by terrorists could leave the electric power system in a large region of the country at least partially disabled for a very long time. Although there are many examples of terrorist and military attacks on power systems elsewhere in the world, at the time of this study international terrorists have shown limited interest in attacking the U.S. power grid. However, that should not be a basis for complacency. Because all parts of the economy, as well as human health and welfare, depend on electricity, the results could be devastating. Terrorism and the Electric Power Delivery System focuses on measures that could make the power delivery system less vulnerable to attacks, restore power faster after an attack, and make critical services less vulnerable while the delivery of conventional electric power has been disrupted.