Feng Gao,Tao Xu
Coordination and Optimization of Grid-Tied Power Converters: From Pulse Width Modulation Perspective
Coordination and Optimization of Grid-Tied Power Converters: From Pulse Width Modulation Perspective
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- More about Coordination and Optimization of Grid-Tied Power Converters: From Pulse Width Modulation Perspective
This book investigates the control and optimization of grid-tied power converters, focusing on pulse width modulation, to enhance the operation of modern power grids. It presents key methods with algorithms and software codes, applies them to practical scenarios, and enhances their credibility for electrical engineers and researchers.
Format: Hardback
Length: 214 pages
Publication date: 03 December 2021
Publisher: Springer Verlag, Singapore
This comprehensive book delves into the intricate realm of control and optimization of grid-tied power converters, with a dedicated focus on pulse width modulation (PWM), a pivotal factor that shapes the size, cost, and switching harmonics of these converters. By employing the methods outlined in this text, multiple grid-tied power converters can seamlessly operate and coordinate, resulting in enhanced efficiency and reliability for modern power grids. To facilitate comprehension, the key methods are presented alongside their corresponding algorithms and comprehensive software codes. In addition to theoretical discussions, this book extends its applications to practical scenarios and industrial products, further bolstering their credibility. Serving as a valuable resource for electrical engineers and researchers in the field of power electronics and power systems, this book provides insightful guidance and expertise.
Introduction:
Grid-tied power converters play a crucial role in the modern power grid, converting renewable energy sources into usable electricity. However, the control and optimization of these converters are complex tasks that require careful consideration. This book aims to provide a comprehensive guide to the control and optimization of grid-tied power converters, with a special emphasis on pulse width modulation (PWM).
Chapter 1:
In this chapter, the fundamentals of grid-tied power converters are introduced, including their basic operation, types, and applications. The importance of PWM in controlling the output voltage and current of grid-tied power converters is discussed, along with its advantages and disadvantages. Various PWM techniques, such as space vector PWM (SVPWM), phase-shift PWM (PSPWM), and hybrid PWM, are explored in detail.
Chapter 2:
Chapter 2 focuses on the control of grid-tied power converters in steady-state conditions. The principles of power factor correction, voltage regulation, and current control are discussed, along with their associated algorithms and software codes. The impact of PWM on the efficiency and performance of grid-tied power converters is analyzed, and the trade-offs between different control strategies are explored.
Chapter 3:
Chapter 3 delves into the optimization of grid-tied power converters. The principles of optimal control theory are introduced, and their application to the control of grid-tied power converters is discussed. The design of optimal PWM algorithms for different operating conditions is explored, and the performance of these algorithms is evaluated using simulation and experimental results.
Chapter 4:
Chapter 4 explores the application of grid-tied power converters in practical scenarios and industrial products. The challenges and opportunities associated with the integration of renewable energy sources into the power grid are discussed, along with the role of grid-tied power converters in achieving energy sustainability. The book also provides case studies and examples of successful implementations of grid-tied power converters in real-world applications.
Conclusion:
In conclusion, this book serves as a valuable resource for electrical engineers and researchers in the field of power electronics and power systems. It provides a comprehensive understanding of the control and optimization of grid-tied power converters, with a special emphasis on PWM. By employing the methods and techniques outlined in this book, readers can develop efficient and reliable grid-tied power converters that contribute to the sustainability and efficiency of the modern power grid.
Weight: 518g
Dimension: 235 x 155 (mm)
ISBN-13: 9789811674457
Edition number: 1st ed. 2022
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