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Distribution systems analysis and automation /

Distribution systems analysis uses techniques to simulate, analyse, and optimise power distribution systems. Together with automation, these techniques underpin the smart grid. Distribution systems are facing growing challenges, due to increasing demand as well as the rising shares of distributed an...

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Detalles Bibliográficos
Clasificación:Libro Electrónico
Autor principal: Gers, Juan M. (Autor)
Formato: Electrónico eBook
Idioma:Inglés
Publicado: London, United Kingdom : Institution of Engineering and Technology, 2020.
Edición:2nd edition.
Colección:IET energy engineering series ; 147.
Temas:
Acceso en línea:Texto completo

MARC

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100 1 |a Gers, Juan M.,  |e author. 
245 1 0 |a Distribution systems analysis and automation /  |c Juan M. Gers. 
250 |a 2nd edition. 
264 1 |a London, United Kingdom :  |b Institution of Engineering and Technology,  |c 2020. 
264 4 |c ©2020 
300 |a 1 online resource (xxx, 410 pages) :  |b illustrations. 
336 |a text  |b txt  |2 rdacontent 
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490 1 |a IET energy engineering ;  |v 147 
504 |a Included bibliographical references and index (401-410). 
520 |a Distribution systems analysis uses techniques to simulate, analyse, and optimise power distribution systems. Together with automation, these techniques underpin the smart grid. Distribution systems are facing growing challenges, due to increasing demand as well as the rising shares of distributed and volatile renewable energy sources. 
505 0 |a Intro -- Contents -- List of figures -- List of tables -- About the Author -- Preface -- 1. Smart Grid overview -- 1.1 Smart Grid for Distribution Systems -- 1.2 Definitions of Smart Grid -- 1.3 Benefits of the Smart Grid on distribution systems -- 1.3.1 Enhancing Reliability -- 1.3.2 Improving System Efficiency -- 1.3.3 Distributed Energy Resources -- 1.3.4 Optimizing Asset Utilization and Efficient Operation -- 1.4 Maturity Models for Smart Grid Applications -- 1.4.1 Smart Grid Maturity Model -- 1.4.2 Benefits of using a Smart Grid Maturity Model -- 1.4.3 Genesis and Components of an SGMM 
505 8 |a 1.4.4 Development Process of an SGMM -- 1.4.5 Levels and Domains of the SGMM -- 1.4.6 Results and Analysis Obtained by SGMM -- 1.4.7 Example Case -- 1.5 Prioritization in Smart Grid projects -- 1.6 Cost-benefit Analysis -- 1.6.1 Definition of Benefits -- 1.6.2 Cost-benefit Analysis Methodologies -- Reference -- Further Reading -- 2. Distribution Automation Functions -- 2.1 Electrical System Automation -- 2.2 EMS Functional Scope -- 2.3 DMS Functional Scope -- 2.4 Functionality of DMS -- 2.4.1 Steady-state Performance Improvement -- 2.4.2 Dynamic Performance Improvement 
505 8 |a 2.5 Outage Management Systems -- 2.6 Geographic Information Systems -- 2.6.1 AM/FM Functions -- 2.6.2 Database Management -- 2.7 Communication Options -- 2.8 Supervisory Control and Data Acquisition -- 2.8.1 SCADA Functions -- 2.8.2 System Architecture -- 2.9 Synchrophasors and its Application in Power Systems -- 2.9.1 Definition -- 2.9.2 Application of PMUs -- Further Reading -- 3. Fundamentals of Distribution System Analysis -- 3.1 Electrical Circuit Laws -- 3.1.1 Ohm's law -- 3.1.2 Kirchhoff's Voltage Law -- 3.1.3 Kirchhoff's Current Law -- 3.2 Circuit Theorems -- 3.2.1 Thevenin's Theorem 
505 8 |a 3.2.2 Star/Delta Transform -- 3.2.3 Superposition Theorem -- 3.3 Power AC Circuits -- 3.4 PU Normalization -- 3.5 Load Flow -- 3.5.1 Formulation of the Load Flow Problem -- 3.5.2 Newton-Raphson Method -- 3.5.3 Type of Buses -- 3.5.4 Application of the Newton-Raphson Method to Solve Load Flows -- 3.5.5 Decoupling method -- 3.6 Radial Load Flow Concepts -- 3.6.1 Theoretical Background -- 3.6.2 Distribution Network Models -- 3.6.3 Nodes and Branches Identification -- 3.6.4 Illustration of Nodes and Branches Identification -- 3.6.5 Algorithm to Develop Radial Load Flow 
505 8 |a 3.7 Power System Analysis Tool -- 3.7.1 New Tendencies in PSAT Applications -- 3.7.2 Advanced Simulations in PSATs based on Load Flow Concept -- 3.8 Proposed Exercises -- Further Reading -- 4. Short Circuit Calculation -- 4.1 Nature of Short Circuit Currents -- 4.2 Calculation of Fault Duty Values -- 4.3 Fault Calculation for Symmetrical Faults -- 4.4 Symmetrical Components -- 4.4.1 Importance and Construction of Sequence Networks -- 4.4.2 Calculation of Asymmetrical Faults using Symmetrical Components -- 4.4.3 Equivalent Impedances for a Power System 
590 |a Knovel  |b ACADEMIC - Electrical & Power Engineering 
650 0 |a Distributed generation of electric power. 
650 0 |a Microgrids (Smart power grids) 
650 0 |a Electric power distribution. 
650 0 |a System theory. 
650 2 |a Fourier Analysis 
650 2 |a Systems Theory 
650 6 |a Électricité  |x Production  |x Génération répartie. 
650 6 |a Minirésaux électriques intelligents. 
650 6 |a Théorie des systèmes. 
650 7 |a Distributed generation of electric power  |2 fast 
650 7 |a Electric power distribution  |2 fast 
650 7 |a Microgrids (Smart power grids)  |2 fast 
650 7 |a automation.  |2 inspect 
650 7 |a distributed power generation.  |2 inspect 
650 7 |a energy storage.  |2 inspect  |0 (uri) http://id.loc.gov/authorities/subjects/sh85043149 
650 7 |a harmonic analysis.  |2 inspect  |0 (uri) http://id.loc.gov/authorities/subjects/sh85058939 
650 7 |a open systems.  |2 inspect 
650 7 |a power distribution control.  |2 inspect 
650 7 |a power distribution protection.  |2 inspect 
650 7 |a power distribution reliability.  |2 inspect 
650 7 |a power system analysis computing.  |2 inspect 
650 7 |a power system harmonics.  |2 inspect 
650 7 |a power system restoration.  |2 inspect 
650 7 |a reactive power control.  |2 inspect 
650 7 |a short-circuit currents.  |2 inspect 
650 7 |a smart power grids.  |2 inspect 
650 7 |a voltage control.  |2 inspect 
653 |a power electric systems 
653 |a interoperability concepts 
653 |a smart grid communications 
653 |a microgrid technology 
653 |a distributed generation system 
653 |a energy storage systems 
653 |a distribution systems protection 
653 |a harmonic analysis 
653 |a VAR control 
653 |a voltage control 
653 |a distribution system restoration 
653 |a distribution system reconfiguration 
653 |a distribution systems reliability 
653 |a short circuit calculation 
653 |a distribution automation functions 
653 |a smart grids 
653 |a distribution systems automation 
653 |a distribution systems analysis 
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830 0 |a IET energy engineering series ;  |v 147. 
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