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Assessment of Power System Reliability: Methods and Applications

✍ Scribed by Marko Čepin (auth.)


Publisher
Springer-Verlag London
Year
2011
Tongue
English
Leaves
322
Edition
1
Category
Library

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✦ Synopsis


The importance of power system reliability is demonstrated when our electricity supply is disrupted, whether it decreases the comfort of our free time at home or causes the shutdown of our companies and results in huge economic deficits.

The objective of Assessment of Power System Reliability is to contribute to the improvement of power system reliability. It consists of six parts divided into twenty chapters. The first part introduces the important background issues that affect power system reliability. The second part presents the reliability methods that are used for analyses of technical systems and processes. The third part discusses power flow analysis methods, because the dynamic aspect of a power system is an important part of related reliability assessments. The fourth part explores various aspects of the reliability assessment of power systems and their parts. The fifth part covers optimization methods. The sixth part looks at the application of reliability and optimization methods.

Assessment of Power System Reliability has been written in straightforward language that continues into the mathematical representation of the methods. Power engineers and developers will appreciate the emphasis on practical usage, while researchers and advanced students will benefit from the simple examples that can facilitate their understanding of the theory behind power system reliability and that outline the procedure for application of the presented methods.

✦ Table of Contents


Front Matter....Pages i-xxi
Front Matter....Pages 1-1
Introduction to Power Systems....Pages 3-13
Introduction to Blackouts....Pages 15-25
Definition of Reliability and Risk....Pages 27-32
Probability Theory....Pages 33-57
Front Matter....Pages 59-59
Fault Tree Analysis....Pages 61-87
Event Tree Analysis....Pages 89-99
Binary Decision Diagram....Pages 101-112
Markov Processes....Pages 113-118
Reliability Block Diagram....Pages 119-123
Common Cause Failures....Pages 125-138
Front Matter....Pages 139-139
Methods for Power Flow Analysis....Pages 141-168
Front Matter....Pages 169-169
Generating Capacity Methods....Pages 171-195
Reliability and Performance Indicators of Power Plants....Pages 197-214
Distribution and Transmission System Reliability Measures....Pages 215-226
Power System Reliability Method....Pages 227-246
Front Matter....Pages 247-247
Linear Programming....Pages 249-252
Dynamic Programming....Pages 253-255
Genetic Algorithm....Pages 257-269
Simulated Annealing....Pages 271-275
Front Matter....Pages 277-277
Application of Reliability and Optimization Methods....Pages 279-295
Back Matter....Pages 297-300

✦ Subjects


Power Electronics, Electrical Machines and Networks; Quality Control, Reliability, Safety and Risk; Statistics for Engineering, Physics, Computer Science, Chemistry and Earth Sciences; Energy Economics; Energy Systems


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