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|a UAMI
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100 |
1 |
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|a Sun, Kai,
|d 1976-
|e author.
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245 |
1 |
0 |
|a Power system control under cascading failures :
|b understanding, mitigation, and system restoration /
|c Kai Sun, Yunhe Hou, Wei Sun, Junjian Qi.
|
264 |
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1 |
|a Hoboken, NJ :
|b John Wiley & Sons, Inc.,
|c 2019.
|
264 |
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4 |
|c ©2019
|
300 |
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|a 1 online resource
|
336 |
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|a text
|b txt
|2 rdacontent
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|a computer
|b c
|2 rdamedia
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338 |
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|a online resource
|b cr
|2 rdacarrier
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500 |
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|a Includes index.
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505 |
0 |
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|a Intro; Title Page; Copyright Page; Contents; About the Companion Website; Chapter 1 Introduction; 1.1 Importance of Modeling and Understanding Cascading Failures; 1.1.1 Cascading Failures; 1.1.2 Challenges in Modeling and Understanding Cascading Failures; 1.2 Importance of Controlled System Separation; 1.2.1 Mitigation of Cascading Failures; 1.2.2 Uncontrolled and Controlled System Separations; 1.3 Constructing Restoration Strategies; 1.3.1 Importance of System Restoration; 1.3.2 Classification of System Restoration Strategies; 1.3.3 Challenges of System Restoration; 1.4 Overview of the Book
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|a 2.2.7 Cascading Failure Models Considering Dynamics and Detailed ProtectionsReferences; Chapter 3 Understanding Cascading Failures; 3.1 Self-Organized Criticality; 3.1.1 SOC Theory; 3.1.2 Evidence of SOC in Blackout Data; 3.2 Branching Processes; 3.2.1 Definition of the Galton-Watson Branching Process; 3.2.2 Estimation of Mean of the Offspring Distribution; 3.2.3 Estimation of Variance of the Offspring Distribution; 3.2.4 Processing and Discretization of Continuous Data; 3.2.5 Estimation of Distribution of Total Outages; 3.2.6 Statistical Insight of Branching Process Parameters
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|a 3.2.7 Branching Processes Applied to Line Outage Data3.2.8 Branching Processes Applied to Load Shed Data; 3.2.9 Cross-Validation for Branching Processes; 3.2.10 Efficiency Improvement by Branching Processes; 3.3 Multitype Branching Processes; 3.3.1 Estimation of Multitype Branching Process Parameters; 3.3.2 Estimation of Joint Probability Distribution of Total Outages; 3.3.3 An Example for a Two-Type Branching Process; 3.3.4 Validation of Estimated Joint Distribution; 3.3.5 Number of Cascades Needed for Multitype Branching Processes; 3.3.6 Estimated Parameters of Branching Processes
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|a 3.3.7 Estimated Joint Distribution of Total Outages3.3.8 Cross-Validation for Multitype Branching Processes; 3.3.9 Predicting Joint Distribution from One Type of Outage; 3.3.10 Estimating Failure Propagation of Three Types of Outages; 3.4 Failure Interaction Analysis; 3.4.1 Estimation of Interactions between Component Failures; 3.4.2 Identification of Key Links and Key Components; 3.4.3 Interaction Model; 3.4.4 Validation of Interaction Model; 3.4.5 Number of Cascades Needed for Failure Interaction Analysis; 3.4.6 Estimated Interaction Matrix and Interaction Network
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|a Online resource; title from digital title page (viewed on February 15, 2019).
|
520 |
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|a Power System Control Under Cascading Failures offers comprehensive coverage of three major topics related to prevention of cascading power outages in a power transmission grid: modelling and analysis, system separation and power system restoration. The book examines modelling and analysis of cascading failures for reliable and efficient simulation and better understanding of important mechanisms, as well as root causes and propagation patterns of failures and power outages. It also covers controlled system separation to mitigate cascading failures addressing key questions such as where, when and how to separate. The text explores optimal system restoration from cascading power outages and blackouts by well-designed milestones, optimised procedures and emerging techniques. The authors - noted experts in the field - include state-of-the-art methods that are illustrated in detail as well as practical examples that show how to use them to address realistic problems and improve current practices. This important resource: . Contains comprehensive coverage of a focused area of cascading power system outages, addressing modelling and analysis, system separation and power system restoration. Offers a description of theoretical models to analyse outages, methods to identify control actions to prevent propagation of outages and restore the system. Suggests state-of-the-art methods that are illustrated in detail with hands-on examples that address realistic problems to help improve current practices. Includes companion website with samples, codes and examples to support the text Written for postgraduate students, researchers, specialists, planners and operation engineers from industry, Power System Control Under Cascading Failures contains a review of a focused area of cascading power system outages, addresses modelling and analysis, system separation, and power system restoration.
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590 |
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|a ProQuest Ebook Central
|b Ebook Central Academic Complete
|
650 |
|
0 |
|a Electric power systems
|x Control.
|
650 |
|
0 |
|a Electric power system stability.
|
650 |
|
0 |
|a Electric power failures.
|
650 |
|
6 |
|a Réseaux électriques (Énergie)
|x Régulation.
|
650 |
|
6 |
|a Réseaux électriques (Énergie)
|x Stabilité.
|
650 |
|
6 |
|a Pannes d'électricité.
|
650 |
|
7 |
|a TECHNOLOGY & ENGINEERING
|x Mechanical.
|2 bisacsh
|
650 |
|
7 |
|a Electric power failures
|2 fast
|
650 |
|
7 |
|a Electric power system stability
|2 fast
|
650 |
|
7 |
|a Electric power systems
|x Control
|2 fast
|
700 |
1 |
|
|a Hou, Yunhe,
|d 1975-
|e author.
|
700 |
1 |
|
|a Sun, Wei,
|d 1982-
|e author.
|
700 |
1 |
|
|a Qi, Junjian,
|d 1985-
|e author.
|
758 |
|
|
|i has work:
|a Power system control under cascading failures (Text)
|1 https://id.oclc.org/worldcat/entity/E39PCGX3wRYryJ7TtJgwBwjgrq
|4 https://id.oclc.org/worldcat/ontology/hasWork
|
776 |
0 |
8 |
|i Print version:
|a Sun, Kai, 1976-
|t Power system control under cascading failures.
|d Hoboken, NJ : John Wiley & Sons, 2018
|z 9781119282020
|w (DLC) 2018023661
|
856 |
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|u https://ebookcentral.uam.elogim.com/lib/uam-ebooks/detail.action?docID=5612923
|z Texto completo
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