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Power Quality in Modern Power Systems

Power Quality in Modern Power Systems

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  • More about Power Quality in Modern Power Systems

Power Quality in Modern Power Systems provides an overview of power quality problems, recent trends, and emerging topics in large-scale renewable energy integration, electric vehicle charging stations, voltage control, and solutions to integrate renewable energy into the electric grid. It is a practical guide for students, professionals, researchers, and consultants.

Format: Paperback / softback
Length: 352 pages
Publication date: 25 November 2020
Publisher: Elsevier Science Publishing Co Inc


Power Quality in Modern Power Systems provides a comprehensive overview of power quality issues in electrical power systems, aiding in the identification of potential pitfalls and the application of fundamental concepts for addressing and maintaining electrical power quality standards. It delves into the latest trends and emerging topics related to power quality in large-scale renewable energy integration, electric vehicle charging stations, voltage control in active distribution networks, and strategies for integrating large-scale renewable energy into the electric grid, accompanied by numerous case studies and real-time examples for conducting power quality assessments and implementing mitigation measures. This book serves as a valuable resource for graduate and post-graduate students of electrical engineering, engineering professionals, researchers, and consultants engaged in the field of power quality.

The increasing demand for electricity and the integration of renewable energy sources have posed significant challenges to power systems. Power quality issues, such as voltage fluctuations, harmonics, and power interruptions, have become increasingly prevalent, affecting the reliability and efficiency of power systems. This book aims to provide a comprehensive understanding of power quality problems and their solutions in modern power systems.

Chapter 1: Introduction to Power Quality

This chapter provides an overview of power quality issues, including their causes, effects, and mitigation measures. It introduces the concept of power quality and its importance in modern power systems.

Chapter 2: Causes of Power Quality Problems

This chapter discusses the various causes of power quality problems, such as voltage sags, swells, harmonics, and power interruptions. It explains the mechanisms behind these problems and the factors that contribute to their occurrence.

Chapter 3: Effects of Power Quality Problems

This chapter highlights the effects of power quality problems on electrical equipment and systems. It discusses the damage caused by voltage fluctuations, harmonics, and power interruptions and the potential risks associated with them.

Chapter 4: Mitigation Measures for Power Quality Problems

This chapter explores the various mitigation measures for power quality problems, such as voltage regulators, filters, and power conditioners. It discusses the design and implementation of these measures and their effectiveness in improving power quality.

Chapter 5: Large-Scale Renewable Energy Integration

This chapter focuses on the challenges and opportunities associated with large-scale renewable energy integration into power systems. It discusses the impact of renewable energy sources on power quality and the strategies for mitigating their effects.

Chapter 6: Electric Vehicle Charging Stations

This chapter examines the power quality issues related to electric vehicle charging stations. It discusses the requirements for electric vehicle charging stations and the strategies for ensuring reliable and efficient power supply.

Chapter 7: Voltage Control in Active Distribution Networks

This chapter discusses the importance of voltage control in active distribution networks. It explains the techniques used for voltage control, such as voltage sags and swells, and the benefits of implementing these techniques.

Chapter 8: Solutions to Integrate Large-Scale Renewable Energy into the Electric Grid

This chapter explores the solutions for integrating large-scale renewable energy into the electric grid. It discusses the challenges and opportunities associated with renewable energy integration and the strategies for overcoming them.

Chapter 9: Case Studies and Real-Time Examples

This chapter presents case studies and real-time examples of power quality problems and their solutions. It showcases the practical applications of the concepts discussed in the previous chapters and provides insights into the challenges and successes of power quality management.

Chapter 10: Conclusion

This chapter summarizes the key findings of the book and highlights the importance of power quality in modern power systems. It provides recommendations for future research and development in the area of power quality.

In conclusion, Power Quality in Modern Power Systems is a valuable resource for electrical engineering students, professionals, researchers, and consultants. It provides a comprehensive overview of power quality issues, their causes, effects, and mitigation measures. The book covers the latest trends and emerging topics related to power quality in large-scale renewable energy integration, electric vehicle charging stations, voltage control in active distribution networks, and solutions for integrating large-scale renewable energy into the electric grid. With numerous case studies and real-time examples, it serves as a practical guide for conducting power quality assessments and implementing mitigation measures. By understanding and addressing power quality problems, we can ensure the reliability and efficiency of modern power systems, enabling the sustainable development of our energy infrastructure.

Weight: 622g
Dimension: 153 x 229 x 31 (mm)
ISBN-13: 9780128233467

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