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Active Electrical Distribution Network
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Вернуться на страницу книги Active Electrical Distribution Network
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Страница 1
Active Electrical Distribution Network A Smart Approach
Страница 3
Table of Contents
List of Illustrations
List of Tables
Guide
Pages
Foreword
Preface
Acknowledgments
List of Contributors
Страница 13
1 Electricity Distribution Structures and Business Models Considering Smart Grid Perspectives
1.1 Introduction
1.2 Importance of the Business Model in the Smart Grid
1.3 Electricity Distribution Structures and Business Models
1.3.1 Government-Owned DISCOM
1.3.2 Privately Owned DISCOMs
1.3.3 Public–Private Partnership (PPP) Model
1.3.4 Distribution Franchisee (DF) Model
1.4 Need for a Novel Business Model for Power Distribution under Smart Grid Environment
1.4.1 Description of the Novel Business Model
1.4.2 Physical Infrastructure Unit (PIU)
1.4.2.1 DISCOM
1.4.2.2 MCOM
1.4.2.3 ITCOM
1.4.2.4 CCOM
1.4.2.5 ICOM
1.4.2.6 IR
1.4.2.7 PFA
1.4.3 Distribution Management and Maintenance Unit (DMMU)
1.4.4 Control, Operation, and Revenue Management Unit (CORMU)
1.4.4.1 RME
1.4.4.2 DSO
1.4.4.3 SNE
1.4.4.4 TI
1.5 Conclusion
References
Страница 40
2 Existing Problems Related to Electrical Distribution Network, Part 1 Distribution Feeder Segregation
2.1 Introduction
2.2 Review of Status of Research and Development in the Subject of Feeder Segregation
2.3 Indian Experiences with Agriculture Feeder Segregation
2.4 Importance of Feeder Segregation in the Context of Current Status
2.5 Threats with Feeder Segregation and Possible Solutions
2.6 Feeder Reconfiguration
2.6.1 Objective Function
2.6.2 Constraints
2.6.3 Algorithm
2.7 Conclusion
References
3 Existing Problems Related to Electrical Distribution Network, Part 2 Technical, Economical, and Environmental
3.1 Introduction
3.2 What Is the Distribution System?
3.3 Existing Problems Related to the ElectricalDistribution Network
3.3.1 Technical Problems
3.3.1.1 Distribution Losses
3.3.1.2 Reliability of the System
3.3.1.3 Contingency Analysis
3.3.1.4 Reverse Power Flow Due to Inappropriate Allocation of Distributed Generators
3.3.1.5 Reactive Power Management
3.3.1.6 Voltage Profile Management
3.3.1.7 Network Restructuring
3.3.1.8 Impacts of Distributed Generator Insertion
3.3.1.9 Grid Security
3.3.1.10 Stability of the System
3.3.2 Economic Problems 3.3.2.1 Inadequacy of the Traditional Distribution System Structure to Cope with the Day-by-Day Enhancement of the Load Requirement
3.3.2.2 Economic Operation of the System
3.3.3 Environmental Problems 3.3.3.1 Deterioration of the Grid with the Course of Time
3.3.3.2 Impact of Worsened Climatic Conditions
3.4 Conclusion
References
Страница 74
4 Power Quality Mitigation in a Distribution Network Using a Battery Energy Storage System
4.1 Introduction
4.2 System Configuration of D-STATCOM with BESS
4.3 BESS Operation and Its Control
4.4 Discussion of the Simulation Results
4.5 Results Analysis under a Balanced System
4.5.1 Response of DSTATCOM-BESS under a Balanced Linear Load
4.5.2 Response of DSTATCOM-BESS under a Nonlinear Load
4.5.3 Response of DSTATCOM-BESS under an Induction Motor (IM) Load
4.6 Results Analysis under an Unbalanced System 4.6.1 Response of DSTATCOM-BESS under an Unbalanced Linear Load
4.6.2 Response of DSTATCOM-BESS under an Unbalanced Nonlinear Load
4.6.3 Response of DSTATCOM-BESS under an Unbalanced IM Load
4.7 Conclusion
References
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