Best Reference Books – Application of Power Electronics to Power Systems

We have compiled the list of Top 10 Best Reference Books on Application of Power Electronics To Power Systems subject. These books are used by students of top universities, institutes and colleges. Here is the full list of top 10 best books on Application of Power Electronics To Power Systems along with reviews.

Kindly note that we have put a lot of effort into researching the best books on Application of Power Electronics To Power Systems subject and came out with a recommended list of top 10 best books. The table below contains the Name of these best books, their authors, publishers and an unbiased review of books on "Application of Power Electronics To Power Systems" as well as links to the Amazon website to directly purchase these books. As an Amazon Associate, we earn from qualifying purchases, but this does not impact our reviews, comparisons, and listing of these top books; the table serves as a ready reckoner list of these best books.

1. “HVDC Power Transmission Systems” by K R Padiyar

Book Review: This book describes in detail the emerging technology of VSC-HVDC links. The book also demonstrates the latest developments which include hybrid active filters application, capacitor commuted converters, double and triple tuned filters and so on. The book also demonstrates application of hybrid active filters, capacitor commutated converters and so on. This book is written by leading scientists and academicians thereby facilitating innovative research and latest teaching theories and concepts.

2. “Understanding FACTS” by N G Hingorani and L Gyugyi

“Understanding FACTS” Book Review: The book explores the enhanced controllability, stability, and power transfer capability of AC transmission systems due to incorporation of Flexible AC Transmission System (FACTS). Power semiconductor devices, voltage-sourced converters and current-sourced converters are explained in detail. The book presents the underlying principles of FACTS for a better understanding of the enhancement in equipment specifications and engineering design. A comparison of the performance of special FACTS controllers including SVC, STATCOM, TCSC, SSSC, UPFC, and IPFC as well as voltage regulators and phase shifters are provided. Electrical engineers interested in power electronics can refer to this book.

3. “HVDC Transmission: Power Conversion Applications in Power Systems” by Chan-Ki Kim

“HVDC Transmission: Power Conversion Applications in Power Systems” Book Review: This book provides a comprehensive coverage of the theoretical and practical aspects of HVDC technology along with a summary of the latest research conducted in this field. Procedures to design, analyze, and maintain HVDC systems in the field are provided with separate chapters dedicated to the fundamentals areas of simulation and main circuit design. Interconnection of wind power systems with HVDC is reviewed with the help of case studies and solved examples. Modern applications of HVDC technologies such as active power filters, PWM, VSC, and 800 KV systems are also covered to give readers an idea about future HVDC trends. This book is intended for power utility engineers, power transmission researchers, and advanced undergraduates and postgraduates in power engineering programs.

4. “POWER SYSTEM ENGINEERING” by Nagrath and D Kothari

“Power System Engineering” Book Review: This book offers a comprehensive introduction to the fundamentals of power system engineering including voltage stability, overhead line insulators, neutral grounding, and corona. Resistance of transmission lines, capacitance, inductance, and power system components are some of the major topics that have been discussed. Numerous solved examples, review problems, and objective type questions are provided to facilitate a better understanding of the subject. The appendix section provided at the end includes MATLAB and SIMULINK program methods for power quality and power systems analysis.


“Power System Harmonic Analysis” Book Review: This book describes innovative analytical and modeling tools for evaluating components and systems and their interactions at harmonic frequencies. After an introduction to the main harmonic modeling philosophies, the book focuses on the interaction of AC/DC converters with the power system and analyzes the behaviour of harmonic sources. Readers can learn to predict the levels of voltage and current harmonics throughout the power system accurately with additional guidance provided for cases of unstable conditions and uncharacteristic harmonics. Methods for accurate assessment of harmonic sources and precise harmonic flow analysis are also discussed. Both current and advanced algorithms used for prediction of harmonic content and determination of characteristic and uncharacteristic harmonic levels are explained. This book is designed for engineers and researchers involved in the planning, design and operation of power systems as well as postgraduate students studying power systems and power electronics.

6. “Power Electronics: Circuits, Devices and Applications” by Rashid

“Power Electronics: Circuit, Devices, and Applications” Book Review: This book introduces the fundamental characteristics of semiconductor devices and their applications in power conversions in a comprehensive, yet concise manner. Power switching devices, conversion methods, analysis and techniques and applications are covered in great detail. The book also examines the four relevant applications, i.e. FACTS, static switches, power supplies, dc drives and ac drives, thoroughly. The book also delves into areas of future potential in power electronics. This book is intended for junior or senior undergraduates in electrical and electronic engineering.

7. “Power System Analysis” by P S R Murty

“Power Systems Analysis” Book Review: This book systematically analyzes the operation of interconnected power systems under both steady state conditions as well as dynamic operating conditions during disturbances. The book delves into the underlying concepts of power system stability, excitation system, and small disturbance analysis in great detail. Grid integration of renewable power sources is also discussed thoroughly. Readers will understand how to keep power flowing through an interconnected grid with the help of numerous examples and solved problems. The book is intended for practitioners, consultants, and students from related engineering disciplines.


“Power System Protection and Switchgear” Book Review: This book seamlessly integrates a thorough discussion on the theory of contemporary protection systems as well as its current technology after undergoing major upgradation. The book also explains the importance of reliable protection schemes and how they help a power system function efficiently.

9. “Power System Analysis” by T K Nagsarkar and M S Sukhija

“Power System Analysis” Book Review: The book offers a comprehensive coverage of power system analysis principles, techniques and application to real-world problems. Transmission line parameters, steady-state performance & travelling wave phenomena on transmission lines and symmetrical & unsymmetrical fault analysis are discussed in great detail. An extensive coverage of simulation of power system elements, power flow studies, power system control, and stability analysis is also provided. The book analyzes power systems using the MATLAB programming language. The book is suitable for practicing engineers, postgraduate and undergraduate students in electrical engineering.

10. “Electrical Power Systems: Analysis, Security And Deregulation” by S Charles Raja and P Venkatesh

“Electrical Power Systems: Analysis, Security and Deregulation” Book Review: This book examines the analysis, security and deregulation of power system engineering by incorporating both their theoretical and practical aspects. The first section describes power flow analysis and examines transient stability problems & analysis problems in systems with fault conditions using MATLAB, Power World Simulator and Siemens PSS/E. The following section deals with contingency analysis, state estimation and optimal power flow. The last portion of the book addresses key issues in electricity deregulation and restructuring of power systems including transmission pricing, available transfer capability, and pricing methods in India. Numerous examples and end-of-chapter problems are provided. The book is designed for undergraduate students of electrical engineering and postgraduate students of power engineering and power management studying power system analysis, electricity deregulation, power system security, restructured power systems, and laboratory courses in power system simulation.

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Manish Bhojasia - Founder & CTO at Sanfoundry
Manish Bhojasia, a technology veteran with 20+ years @ Cisco & Wipro, is Founder and CTO at Sanfoundry. He is Linux Kernel Developer & SAN Architect and is passionate about competency developments in these areas. He lives in Bangalore and delivers focused training sessions to IT professionals in Linux Kernel, Linux Debugging, Linux Device Drivers, Linux Networking, Linux Storage, Advanced C Programming, SAN Storage Technologies, SCSI Internals & Storage Protocols such as iSCSI & Fiber Channel. Stay connected with him @ LinkedIn | Youtube | Instagram | Facebook | Twitter