
Power Quality in Modern Power Systems
- 352 pages
- English
- ePUB (mobile friendly)
- Available on iOS & Android
Power Quality in Modern Power Systems
About this book
Power Quality in Modern Power Systems presents an overview of power quality problems in electrical power systems, for identifying pitfalls and applying the fundamental concepts for tackling and maintaining the electrical power quality standards in power systems. It covers the recent trends and emerging topics of power quality in large scale renewable energy integration, electric vehicle charging stations, voltage control in active distribution network and solutions to integrate large scale renewable energy into the electric grid with several case studies and real-time examples for power quality assessments and mitigations measures. This book will be a practical guide for graduate and post graduate students of electrical engineering, engineering professionals, researchers and consultants working in the area of power quality.- Explains the power quality characteristics through suitable real time measurements and simulation examples- Explanations for harmonics with various real time measurements are included- Simulation of various power quality events using PSCAD and MATLAB software- PQ disturbance detection and classification through advanced signal processing and machine learning tools- Overview about power quality problems associated with renewable energy integration, electric vehicle supply equipment's, residential systems using several case studies
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Table of contents
- Cover image
- Title page
- Table of Contents
- Copyright
- Contributors
- Preface
- Acknowledgment
- Chapter 1. Power quality and its characteristics
- Chapter 2. Power system harmonics
- Chapter 3. Power quality problems with renewable energy integration
- Chapter 4. Fault ride-through (FRT) capability and current FRT methods in photovoltaic-based distributed generators
- Chapter 5. Power quality problems associated with electric vehicle charging infrastructure
- Chapter 6. Impact of power quality issues in residential systems
- Chapter 7. Voltage control in active distribution networks
- Chapter 8. Voltage dips caused by faults in a transmission system: a monitoring case study of a sensitive industrial consumer
- Chapter 9. Power quality improvement by a double-source multilevel inverter with reduced device and standing voltage on switches
- Chapter 10. E-STATCOM (energy storage+STATCOM): a solution to integrate large-scale wind farms into the grid at medium and high power levels
- Chapter 11. PQ disturbance detection and classification combining advanced signal processing and machine learning tools
- Chapter 12. Recent trends and advances in power quality
- Index