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Reliability Assessment of Electric Power Systems Using Monte Carlo Methods by W. Billinton Hardcover | Indigo Chapters
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Reliability Assessment of Electric Power Systems Using Monte Carlo Methods by W. Billinton Hardcover | Indigo Chapters - new book

ISBN: 9780306447815

The application of quantitative reliability evaluation in electric power sys­ tems has now evolved to the point at which most utilities use these techniques in one or more areas of their … More...

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Reliability Assessment of Electric Power Systems Using Monte Carlo Methods (Physics of Solids and Liquids) - Billinton, Li, W.
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Billinton, Li, W.:

Reliability Assessment of Electric Power Systems Using Monte Carlo Methods (Physics of Solids and Liquids) - hardcover

1994, ISBN: 9780306447815

Springer, Gebundene Ausgabe, Auflage: 1994, 368 Seiten, Publiziert: 1994-11-30T00:00:01Z, Produktgruppe: Buch, Hersteller-Nr.: Illustrated, 3.48 kg, Verkaufsrang: 8814, Hardware & Technik… More...

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Reliability Assessment of Electric Power Systems Using Monte Carlo Methods (Physics of Solids and Liquids) - Billinton, Li, W.
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Billinton, Li, W.:
Reliability Assessment of Electric Power Systems Using Monte Carlo Methods (Physics of Solids and Liquids) - hardcover

1994

ISBN: 9780306447815

Springer, Gebundene Ausgabe, Auflage: 1994, 368 Seiten, Publiziert: 1994-11-30T00:00:01Z, Produktgruppe: Buch, Hersteller-Nr.: Illustrated, 3.48 kg, Verkaufsrang: 8814, Hardware & Technik… More...

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Reliability Assessment of Electric Power Systems Using Monte Carlo Methods (Physics of Solids and Liquids) - Billinton, Li, W.
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Billinton, Li, W.:
Reliability Assessment of Electric Power Systems Using Monte Carlo Methods (Physics of Solids and Liquids) - hardcover

1994, ISBN: 9780306447815

Springer, Gebundene Ausgabe, Auflage: 1994, 368 Seiten, Publiziert: 1994-11-30T00:00:01Z, Produktgruppe: Buch, Hersteller-Nr.: Illustrated, 3.48 kg, Verkaufsrang: 8814, Hardware & Technik… More...

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Reliability Assessment of Electric Power Systems Using Monte Carlo Methods (Physics of Solids and Liquids) - Billinton, Li, W.
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Billinton, Li, W.:
Reliability Assessment of Electric Power Systems Using Monte Carlo Methods (Physics of Solids and Liquids) - hardcover

1994, ISBN: 9780306447815

Springer, Gebundene Ausgabe, Auflage: 1994, 368 Seiten, Publiziert: 1994-11-30T00:00:01Z, Produktgruppe: Buch, Hersteller-Nr.: Illustrated, 3.48 kg, Verkaufsrang: 8718, Hardware & Technik… More...

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Reliability Assessment of Electric Power Systems Using Monte Carlo Methods by W. Billinton Hardcover | Indigo Chapters

This textbook examines the basic concepts and applications of Monte Carlo simulation. Chapters focus on the practical applications of Monte Carlo simulation in reliability evaluation of electric power generation, transmission, and distribution systems. This text is an important contribution to undergraduate and graduate courses on reliability evaluation of general engineering systems and its specialized areas.

Details of the book - Reliability Assessment of Electric Power Systems Using Monte Carlo Methods by W. Billinton Hardcover | Indigo Chapters


EAN (ISBN-13): 9780306447815
ISBN (ISBN-10): 0306447819
Hardcover
Publishing year: 2007
Publisher: W. Billinton
368 Pages
Weight: 0,681 kg
Language: eng/Englisch

Book in our database since 2007-10-30T17:10:49+00:00 (London)
Detail page last modified on 2022-09-22T12:07:35+01:00 (London)
ISBN/EAN: 9780306447815

ISBN - alternate spelling:
0-306-44781-9, 978-0-306-44781-5
Alternate spelling and related search-keywords:
Book author: billington, roy
Book title: solids liquids, electrical power systems, reliability assessment electric power systems using monte carlo methods, physics


Information from Publisher

Author: Billinton; W. Li
Title: Reliability Assessment of Electric Power Systems Using Monte Carlo Methods
Publisher: Springer; Springer US
352 Pages
Publishing year: 1994-11-30
New York; NY; US
Language: English
267,49 € (DE)
274,99 € (AT)
295,00 CHF (CH)
Available
XVI, 352 p.

BB; Hardcover, Softcover / Technik/Elektronik, Elektrotechnik, Nachrichtentechnik; Schaltkreise und Komponenten (Bauteile); Verstehen; Monte Carlo method; distribution; engine; model; power systems; programming; reliability; simulation; transmission; Electronic Circuits and Systems; Electrical and Electronic Engineering; Elektrotechnik; BC

1 Introduction.- 2 Basic Concepts of Power System Reliability Evaluation.- 3 Elements Of Monte Carlo Methods.- 4 Generating System Adequacy Assessment.- 5 Composite System Adequacy Assessment.- 6 Distribution System and Station Adequacy Assessment.- 7 Reliability Cost/Worth Assessment.- Appendix A Reliability Test Systems.- A.1. IEEE Reliability Test System (IEEE RTS).- A.1.1. Load Model.- A.1.2. Generating System.- A.1.3. Transmission System.- A.1.4. Additional Data.- A.2. Roy Billinton Test System (RBTS).- A.2.1. Brief Description of the RBTS.- A.2.2. Load Model.- A.2.3. Generating System.- A.2.4. Transmission System.- A.2.5. Station Data.- A.2.6. Reliability Worth Assessment Data.- A.3. References.- Appendix B Elements of Probability and Statistics.- B.1. Probability Concept and Calculation Rules.- B.1.1. Probability Concept.- B.1.2. Probability Calculation Rules.- B.2. Probability Distributions of Random Variables.- B.2.1. Probability Distribution Function and Density Function.- B.2.2. Important Distributions in Reliability Evaluation.- B.3. Numerical Characteristics of Random Variables.- B.3.1. Expectation and Variance.- B.3.2. Covariance and Correlation Function.- B.4. Limit Theorems.- B.4.1. Law of Large Numbers.- B.4.2. Central Limit Theorem.- B.5. Parameter Estimation.- B.5.1. Basic Definitions.- B.5.2. Sample Mean and Sample Variance.- B.6. References.- Appendix C Power System Analysis Techniques.- C.1. AC Load Flow Models.- C.1.1. Load Flow Equations.- C.1.2. Newton-Raphson Model.- C.1.3. Fast Decoupled Model.- C.2. DC Load Flow Models.- C.2.1. Basic Equations.- C.2.2. Relationship between Power Injections and Line Flows.- C.3. Optimal Power Flow.- C.4. Contingency Analysis.- C.5. References.- Appendix D Optimization Techniques.- D.1. Linear Programming.- D.1.1. Basic Concepts.- D.1.2. Generalized Simplex Method.- D.1.3. Duality Principle.- D.1.4. Dual Simplex Method.- D.1.5. Linear Programming Relaxation Technique.- D.2. Maximum Flow Method.- D.2.1. Basic Concepts.- D.2.2. Maximum Flow Problem.- D.3. References.

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