Risk assessment of power systems : (Record no. 73806)

000 -LEADER
fixed length control field 08702nam a2201285 i 4500
001 - CONTROL NUMBER
control field 5238312
005 - DATE AND TIME OF LATEST TRANSACTION
control field 20220712205622.0
008 - FIXED-LENGTH DATA ELEMENTS--GENERAL INFORMATION
fixed length control field 151221s2005 njua ob 001 eng d
020 ## - INTERNATIONAL STANDARD BOOK NUMBER
ISBN 9780471707721
-- electronic
020 ## - INTERNATIONAL STANDARD BOOK NUMBER
-- hardback
020 ## - INTERNATIONAL STANDARD BOOK NUMBER
-- electronic
020 ## - INTERNATIONAL STANDARD BOOK NUMBER
-- electronic
020 ## - INTERNATIONAL STANDARD BOOK NUMBER
-- electronic
020 ## - INTERNATIONAL STANDARD BOOK NUMBER
-- electronic
020 ## - INTERNATIONAL STANDARD BOOK NUMBER
-- electronic
020 ## - INTERNATIONAL STANDARD BOOK NUMBER
-- hardback
082 04 - CLASSIFICATION NUMBER
Call Number 621.319/1
082 04 - CLASSIFICATION NUMBER
Call Number 621.3191
100 1# - AUTHOR NAME
Author Li, Wenyuan,
245 10 - TITLE STATEMENT
Title Risk assessment of power systems :
Sub Title models, methods, and applications /
300 ## - PHYSICAL DESCRIPTION
Number of Pages 1 PDF (xviii, 325 pages) :
490 1# - SERIES STATEMENT
Series statement IEEE Press series on power engineering ;
505 0# - FORMATTED CONTENTS NOTE
Remark 2 Preface -- 1 Introduction -- 1.1 Risk in Power Systems -- 1.2 Basic Concepts of Power System Risk Assessment -- 1.3 Outline of the Book -- 2 Outage Models of System Components -- 2.1 Introduction -- 2.2 Models of Independent Outages -- 2.3 Models of Dependent Outages -- 2.4 Conclusions -- 3 Parameter Estimation in Outage Models -- 3.1 Introduction -- 3.2 Point Estimation of Mean and Variance of Failure Data -- 3.3 Interval Estimation of Mean and Variance of Failure Data -- 3.4 Estimating Failure Frequency of Individual Components -- 3.5 Estimating Probability from a Binomial Distribution -- 3.6 Experimental Distribution of Failure Data and Its Test -- 3.7 Estimating Parameters in Aging Failure Models -- 3.8 Conclusions -- 4 Elements of Risk Evaluation Methods -- 4.1 Introduction -- 4.2 Methods for Simple Systems -- 4.3 Methods for Complex Systems -- 4.4. Conclusions -- 5 Risk Evaluation Techniques for Power Systems -- 5.1 Introduction -- 5.2 Techniques Used in Generation-Demand Systems -- 5.3 Techniques Used in Radial Distribution Systems -- 5.4 Techniques Used in Substation Configurations -- 5.5 Techniques Used in Composite Generation and Transmission Systems -- 5.6 Conclusions -- 6 Application of Risk Evaluation to Transmission Development Planning -- 6.1 Introduction -- 6.2 Concept of Probabilistic Planning -- 6.3 Risk Evaluation Approach -- 6.4 Example 1: Selecting the Lowest-Cost Planning Alternative -- 6.5 Example 2: Applying Different Planning Criteria -- 6.6 Conclusions -- 7 Application of Risk Evaluation to Transmission Operation Planning -- 7.1 Introduction -- 7.2 Concept of Risk Evaluation in Operation Planning -- 7.3 Risk Evaluation Method -- 7.4 Example 1: Determining the Lowest-Risk Operation Mode -- 7.5 Example 2: A Simple Case by Hand Calculations -- 7.6 Conclusions -- 8 Application of Risk Evaluation to Generation Source Planning -- 8.1 Introduction -- 8.2 Procedure for Reliability Planning -- 8.3 Simulation of Generation and Risk Costs -- 8.4 Example 1: Selecting Location and Size of Cogenerators.
505 8# - FORMATTED CONTENTS NOTE
Remark 2 8.5 Example 2: Making a Decision to Retire a Local Generation Plant -- 8.6 Conclusions -- 9 Selection of Substation Configurations -- 9.1 Introduction -- 9.2 Load Curtailment Model -- 9.3 Risk Evaluation Approach -- 9.4 Example 1: Selecting Substation Configuration -- 9.5 Example 2: Selecting Transmission Line Arrangement Associated with Substations -- 9.6 Conclusions -- 10 Reliability-Centered Maintenance -- 10.1 Introduction -- 10.2 Basic Tasks in RCM -- 10.3 Example 1: Transmission Maintenance Scheduling -- 10.4 Example 2: Workforce Planning in Maintenance -- 10.5 Example 3: A Simple Case Performed by Hand Calculations -- 10.6 Conclusions -- 11 Probabilistic Spare-Equipment Analysis -- 11.1 Introduction -- 11.2 Spare-Equipment Analysis Based on Reliability Criteria -- 11.3 Spare-Equipment Analysis Using the Probabilistic Cost Method -- 11.4 Example 1: Determining Number and Timing of Spare Transformers -- 11.5 Example 2: Determining Redundancy Level of 500 kV Reactors -- 11.6 Conclusions -- 12 Reliability-Based Transmission-Service Pricing -- 12.1 Introduction -- 12.2 Basic Concept -- 12.3 Calculation Methods -- 12.4 Rate Design -- 12.5 Application Example -- 12.6 Conclusions -- 13 Probabilistic Transient Stability Assessment -- 13.1 Introduction -- 13.2 Probabilistic Modeling and Simulation Methods -- 13.3 Procedure -- 13.4 Examples -- 13.5 Conclusions -- Appendix A Basic Probability Concepts -- A.1 Probability Calculation Rules -- A.2 Random Variable and its Distribution -- A.3 Important Distributions in Risk Evaluation -- A.4 Numerical Characteristics -- Appendix B Elements of Monte Carlo Simulation -- B.1 General Concept -- B.2 Random Number Generators -- B.3 Inverse Transform Method of Generating Random Variates -- B.4 Important Random Variates in Risk Evaluation -- Appendix C Power-Flow Models -- C.1 AC Power-Flow Models -- C.2 DC Power-Flow Models -- Appendix D Optimization Algorithms -- D.1 Simplex Methods for Linear Programming -- D.2 Interior Point Method for Nonlinear Programming.
505 8# - FORMATTED CONTENTS NOTE
Remark 2 Appendix E Three Probability Distribution Tables -- References -- Index -- About the Author.
520 ## - SUMMARY, ETC.
Summary, etc Power system risk assessment is becoming an important and mandatory task in planning, operation, maintenance, and asset management of utilities, particularly under the deregulation environment. This book will provide readers with the tools to solve practical problems using appropriate risk assessment techniques. Both analytical and Monte Carlo evaluation methods are discussed with an emphasis on applied techniques and actual considerations in generation, transmission, substation, and distribution systems.
650 #0 - SUBJECT ADDED ENTRY--SUBJECT 1
Subject Electric power systems
General subdivision Reliability
-- Mathematical models.
650 #0 - SUBJECT ADDED ENTRY--SUBJECT 1
Subject Monte Carlo method.
856 42 - ELECTRONIC LOCATION AND ACCESS
Uniform Resource Identifier https://ieeexplore.ieee.org/xpl/bkabstractplus.jsp?bkn=5238312
942 ## - ADDED ENTRY ELEMENTS (KOHA)
Koha item type eBooks
264 #1 -
-- Piscataway, New Jersey :
-- IEEE Press,
-- c2005.
264 #2 -
-- [Piscataqay, New Jersey] :
-- IEEE Xplore,
-- [2005]
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-- text
-- rdacontent
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-- electronic
-- isbdmedia
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-- online resource
-- rdacarrier
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-- Description based on PDF viewed 12/21/2015.
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-- Aging
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-- Analytical models
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-- Bibliographies
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-- Biographies
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-- Biological system modeling
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-- Bismuth
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-- Capacity planning
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-- Convergence
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-- Convolution
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-- Density functional theory
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-- Distribution functions
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-- Ear
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-- Economics
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-- Equations
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-- Estimation
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-- Exponential distribution
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-- Gaussian distribution
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-- Generators
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-- Indexes
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-- Investments
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-- Lagrangian functions
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-- Linear programming
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-- Load flow
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-- Load modeling
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-- Maintenance engineering
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-- Mathematical model
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-- Minimization
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-- Monte Carlo methods
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-- Optimization
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-- Parameter estimation
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-- Planning
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-- Power industry
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-- Power system dynamics
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-- Power system reliability
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-- Power system stability
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-- Power systems
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-- Pricing
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-- Probabilistic logic
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-- Probability density function
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-- Probability distribution
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-- Programming
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-- Random variables
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-- Reliability
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-- Reliability engineering
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-- Resistance
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-- Risk management
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-- Safety
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-- Sections
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-- Stability criteria
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-- Substations
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-- Switches
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-- Time frequency analysis
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-- Transforms
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-- Transient analysis
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-- Vectors

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