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The electrical power supply is about to change; future generation will increasingly take place in and near local neighborhoods with diminishing reliance on distant power plants. The existing grid is not adapted for this purpose as it is largely a remnant from the 20th century. Can the grid be transformed into an intelligent and flexible grid that is future proof?
This revised edition of Electrical Power System Essentials contains not only an accessible, broad and up-to-date overview of alternating current (AC) power systems, but also end-of-chapter exercises in every chapter, aiding readers in their understanding of the material introduced.
With an original approach the book covers the generation of electric energy from thermal power plants as from renewable energy sources and treats the incorporation of power electronic devices and FACTS. Throughout there are examples and case studies that back up the theory or techniques presented.
The authors set out information on mathematical modelling and equations in appendices rather than integrated in the main text. This unique approach distinguishes it from other text books on Electrical Power Systems and makes the resource highly accessible for undergraduate students and readers without a technical background directly
related to power engineering.
After laying out the basics for a steady-state analysis of the three-phase power system, the book examines:
* generation, transmission, distribution, and utilization of electric energy;
* wind energy, solar energy and hydro power;
* power system protection and circuit breakers;
* power system control and operation;
* the organization of electricity markets and the changes currently taking place;
* system blackouts;
* future developments in power systems, HVDC connections and smart grids.
The book is supplemented by a companion website from which teaching materials can be downloaded.
- Sales Rank: #17244891 in Books
- Published on: 2017-04-24
- Original language: English
- Number of items: 1
- Dimensions: 9.60" h x .0" w x 6.70" l, .0 pounds
- Binding: Hardcover
- 425 pages
From the Back Cover
The electrical power supply is about to change; future generation will increasingly take place in and near local neighborhoods with diminishing reliance on distant power plants. The existing grid is not adapted for this purpose as it is largely a remnant from the 20th century. Can the grid be transformed into an intelligent and flexible grid that is future proof?
This revised edition of Electrical Power System Essentials contains not only an accessible, broad and up-to-date overview of alternating current (AC) power systems, but also end-of-chapter exercises in every chapter, aiding readers in their understanding of the material introduced.
With an original approach the book covers the generation of electric energy from thermal power plants as from renewable energy sources and treats the incorporation of power electronic devices and FACTS. Throughout there are examples and case studies that back up the theory or techniques presented.
The authors set out information on mathematical modelling and equations in appendices rather than integrated in the main text. This unique approach distinguishes it from other text books on Electrical Power Systems and makes the resource highly accessible for undergraduate students and readers without a technical background directly
related to power engineering.
After laying out the basics for a steady-state analysis of the three-phase power system, the book examines:
* generation, transmission, distribution, and utilization of electric energy;
* wind energy, solar energy and hydro power;
* power system protection and circuit breakers;
* power system control and operation;
* the organization of electricity markets and the changes currently taking place;
* system blackouts;
* future developments in power systems, HVDC connections and smart grids.
The book is supplemented by a companion website from which teaching materials can be downloaded.
About the Author
Dr. Pieter Schavemaker, Principal Consultant of E-Bridge Consulting B.V., has worked in the energy sector for 20 years. Pieter gained a varied experience working as assistant professor at the Delft University of Technology, with a large manufacturer of power system equipment (ABB), with a Transmission System Operator (Tennet TSO), and as a consultant. During recent years, Pieter was heavily involved in the international work on the boundary between system operations and the electricity market. Pieter is one of the founding fathers of the CWE Flow-based Market Coupling that is currently in operation. Pieter holds a Ph.D. in Electrical Power Systems from Delft University of Technology, is a certified PRINCE2® Practitioner, and author of the book ‘Electrical Power System Essentials’, published by John Wiley & Sons.
Lou van der Sluis obtained his M.Sc. in electrical engineering from the Delft University of Technology in 1974. He joined the KEMA High Power Laboratory in 1977 as a test engineer. In 1990 he became a part-time professor and since 1992 he has been employed as a full-time professor in Electrical Power Systems at the Delft University of Technology. Professor van der Sluis is a senior member of IEEE and past convener of CC-03 of CIGRE and CIRED to study the transient recovery voltages in medium and high voltage networks. He is has been member of CIGRE WG. A3-24 on internal arc testing and member of CIGRE WG. C4-502 to study the interaction between High-Voltage overhead lines and underground cables. He is a member of the advisory board of SC-A3 of CIGRE. Professor Van der Sluis is the author the book Transients in Power Systems and co-author of Electrical Power System Essentials and Switching in Electrical Transmission and Distribution Systems, all published by Wiley.
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