
Graph Database and Graph Computing for Power System Analysis by Renchang Dai
Graph Database and Graph Computing for Power System AnalysisUnderstand a new way to model power systems with this comprehensive and practical guide
Graph databases have become one of the essential tools for managing large data systems. Their structure improves over traditional table-based relational databases in that it reconciles more closely to the inherent physics of a power system, enabling it to model the components and the network of a power system in an organic way. The authors’ pioneering research has demonstrated the effectiveness and the potential of graph data management and graph computing to transform power system analysis.
Graph Database and Graph Computing for Power System Analysis presents a comprehensive and accessible introduction to this research and its emerging applications. Programs and applications conventionally modeled for traditional relational databases are reconceived here to incorporate graph computing. The result is a detailed guide which demonstrates the utility and flexibility of this cutting-edge technology.
The book’s readers will also find:
- Design configurations for a graph-based program to solve linear equations, differential equations, optimization problems, and more
- Detailed demonstrations of graph-based topology analysis, state estimation, power flow analysis, security-constrained economic dispatch, automatic generation control, small-signal stability, transient stability, and other concepts, analysis, and applications
- An authorial team with decades of experience in software design and power systems analysis
Graph Database and Graph Computing for Power System Analysis is essential for researchers and academics in power systems analysis and energy-related fields, as well as for advanced graduate students looking to understand this particular set of technologies.
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Electric Power System Basics for the Nonelectrical Professional
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Power Conversion and Control of Wind Energy Systems
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Maintaining Mission Critical Systems in a 24/7 Environment
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Power System Protection
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Hidden Risk in Occupational Electrical Safety
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Modern Power System
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Handbook of Large Turbo-Generator Operation and Maintenance
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Applications of Modern Heuristic Optimization Methods in Power and Energy Systems
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Electrical Railway Transportation Systems
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Economic Market Design and Planning for Electric Power Systems
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Practical Lighting Design with LEDs
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Rating of Electric Power Cables in Unfavorable Thermal Environment
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Introduction to FACTS Controllers
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Advances in Electric Power and Energy Systems
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Model Predictive Control of Wind Energy Conversion Systems
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Real-Time Electromagnetic Transient Simulation of AC-DC Networks
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Understanding Symmetrical Components for Power System Modeling
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High Voltage Protection for Telecommunications
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Probabilistic Power System Expansion Planning with Renewable Energy Resources and Energy Storage Systems
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Current Signature Analysis for Condition Monitoring of Cage Induction Motors
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Electricity Economics
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Reference Frame Theory
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Instantaneous Power Theory and Applications to Power Conditioning
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High Voltage and Electrical Insulation Engineering
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Introduction to the Analysis of Electromechanical Systems
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Power Electronics in Renewable Energy Systems and Smart Grid
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Electricity Markets
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Distributed Energy Management of Electrical Power Systems
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Energy Processing and Smart Grid
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Advanced Control of Doubly Fed Induction Generator for Wind Power Systems
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Insulators for Icing and Polluted Environments
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Subsynchronous Resonance in Power Systems
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Measuring the Electric Grid
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Smart Cyber-Physical Power Systems: Challenges and Solutions, 2 Volume Set
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Communities for Clean Energy Justice and Equity in Grid Modernization
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Artificial Intelligence Empowered Smart Energy Systems
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Energy Production Systems Engineering
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Introduction to Electrical Power Systems
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Intelligent Data Mining and Analysis in Power and Energy Systems
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Coordinated Operation and Planning of Modern Heat and Electricity Incorporated Networks
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Control of Electric Machine Drive Systems
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An Introduction to Wavelet Modulated Inverters
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Electricity Power Generation
Renchang Dai, PhD, is a Consulting Analyst and Project Manager for Puget Sound Energy, Washington, USA. He is a founding member of GE Energy Consluting Smart Grid CoE and an IEEE Senior Member, and has worked and published extensively on graph based power system analysis software.
Guangyi Liu, PhD, is Chief Scientist and Smart Grid CoE at Envision Digital, USA. He is an IEEE Senior member and has extensive experience developing software for graph-based power system analysis across numerous applications.
| SKU | Unavailable |
| ISBN 13 | 9781119903864 |
| ISBN 10 | 1119903866 |
| Title | Graph Database and Graph Computing for Power System Analysis |
| Author | Renchang Dai |
| Series | Ieee Press Series On Power And Energy Systems |
| Condition | Unavailable |
| Binding Type | Hardback |
| Publisher | John Wiley & Sons Inc |
| Year published | 2023-09-28 |
| Number of pages | 512 |
| Cover note | Book picture is for illustrative purposes only, actual binding, cover or edition may vary. |
| Note | Unavailable |










































