Selasa, 21 Agustus 2012

[P782.Ebook] Fee Download Design of Smart Power Grid Renewable Energy Systems, by Ali Keyhani

Fee Download Design of Smart Power Grid Renewable Energy Systems, by Ali Keyhani

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Design of Smart Power Grid Renewable Energy Systems, by Ali Keyhani

Design of Smart Power Grid Renewable Energy Systems, by Ali Keyhani



Design of Smart Power Grid Renewable Energy Systems, by Ali Keyhani

Fee Download Design of Smart Power Grid Renewable Energy Systems, by Ali Keyhani

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Design of Smart Power Grid Renewable Energy Systems, by Ali Keyhani

To address the modeling and control of smart grid renewable energy system into electric power systems, this book�integrates three areas of electrical engineering: power system engineering, control systems engineering and power electronics� The approach to the integration of these three areas differs from classical methods. Due to complexity of this task, the author has decided to present the basic concepts, and then present a simulation test bed in matlab to use these concepts to solve a basic problem in development of smart grid energy system. Therefore, each chapter has three parts: first a problem of integration is stated and its importance is described. Then, the mathematical model of the same problem is formulated. Next, the solution steps are outlined. This step is followed by developing a matlab simulation test bed. Each chapter ends with a set of problems and projects. The book is intended be used as textbook for instruction or by researchers.� This book can be used as undergraduate text for both electrical and mechanical engineers. The prerequisite for the course is a course in fundamental of electrical engineering.

  • Sales Rank: #1181910 in Books
  • Published on: 2011-08-02
  • Original language: English
  • Number of items: 1
  • Dimensions: 9.50" h x 1.40" w x 6.45" l, 2.30 pounds
  • Binding: Hardcover
  • 592 pages

Review
"I highly recommend the revolutionary and landmark book Design of Smart Power Grid Renewable Energy Systems by Ali Keyhani, Ph.D., to anyone who is serious about an integrated systems approach to the design and development of smart power grids and microgrids, and an richer understanding of the mathematical basis for the system. This book is a powerful textbook for any students seeking a career in the crucial smart power grid, microgrid technology, and green energy fields." (Blog Business World, 19 October 2011)

From the Back Cover

The first guide to the Design and modeling of smart grid energy systems

As we begin the second decade of the 21st century and approach the problem of global warming, we need to accept a fundamental change in how we create, generate, distribute, and use energy. Creating sustainable energy, thereby reducing or eliminating our carbon footprint and efficiently utilizing available energy resources, is of vital importance. Smart grid renewable energy systems are a revolutionary concept in electrical engineering designed to allow end users control over their individual energy needs by providing them with the means to create, maintain, and distribute energy.

Design of Smart Power Grid Renewable Energy Systems uniquely addresses the design and modeling of smart grid renewable energy systems by integrating three areas of electrical engineering: power system engineering, power electronics, and electric energy conversion systems—with an approach that differs from classic methods. After a brief overview of energy and its evolution to electric power, the author introduces the basic concepts behind power grids, then takes an in-depth look at the modeling of converters in power grid distributed generation systems and the design of a smart power grid system. Microgrid photovoltaic and wind energy systems are addressed as renewable energy sources. Load flow analysis of power grids and microgrids, and power grid fault studies are the subjects of the text's final chapters.

In each chapter, Dr. Keyhani presents a key engineering problem and subsequently formulates a mathematical model of the problem followed by a simulation testbed in MATLAB�, highlighting solution steps. Each chapter includes a number of solved examples, problems, and related references.

Design of Smart Power Grid Renewable Energy Systems is written as an undergraduate/graduate textbook for introducing renewable energy sources and the basic concept of smart power grids for students in electrical and mechanical engineering. The book is also a useful reference tool for researchers and energy policy makers.

About the Author

Ali Keyhani, PhD, is a Professor in the Department of Electrical and Computer Engineering at The Ohio State University. He is a Fellow of the IEEE and a recipient of The Ohio State University, College of Engineering Research Award for 1989, 1999, and 2003. He has worked for companies such as Columbus and Southern Electric Power Company, Hewlett-Packard Co., Foster Wheeler Engineering, and TRW. He has performed research and consulting for American Electric Power, TRW Control, Liebert, Delphi Automotive Systems, General Electric, General Motors, and Ford. Dr. Keyhani has authored many articles in IEEE Transactions in Energy Conversion, Power Electronics, and Power Systems Engineering.

Most helpful customer reviews

1 of 1 people found the following review helpful.
Power System Analysis/Design topics enhanced with Smart Grid and Renewable Energy Systems flavors
By Anonymous
- This book is a great resource for those who plan to teach modern (smart grid) renewable energy systems both from analysis and design perspective.
- It would well suit in undergraduate electric power engineering curriculum (preferably in senior year).
- General engineering programs would also welcome this text.
- Power Electronics and Power System Analysis courses can be prerequisites before teaching from this book.
- However, depending on the teaching style or student needs, these prerequisites may not be necessary.
- This book provides basic operational principles of smart grid and micro grid.
- Plenty of practical real life examples make subject topic for each chapter real clear. Students would love this !
- The analysis is based on Sine-PWM inverters.
- Interdisciplinary nature (Inverters, PV modules, wind generators, power systems operation/control/analysis, smart grid/microgrid).
- Recent research topics are also highlighted. I really liked this.

1 of 1 people found the following review helpful.
Great resource for Smart Grid and Micro-Grid
By Afshin
The book starts with basic power engineering principles and elaborately introduces the new concepts of micro-grid and smart-grid. The book has many classical power engineering topics covered that can be definitely used for power engineering courses. The renewable energy aspect of the book stands out as it provides a complete guide to calculate renewable energy based systems including solar and wind. Detailed design of each component as well as sizing and grid formation are provided. Sizing of inverters, solar, wind, storage and grid connectivity are discussed in details. Power electronics chapters start with introduction of basic circuits and end up with selection guide for inverters for smart-grid and micro-grids.
It is also a great resource for design and field engineers with a lot of tables, sample designs, and proposed systems. It is a good text and reference book for power and renewable energy major undergraduate and graduate students.

0 of 0 people found the following review helpful.
Very nice book for undergraduates looking into the new era of power and energy systems
By Mahyar
The face of the power and energy systems have been subjected to a lot of changes during the past decade. However, the classical textbooks in the power systems do not deal with these changes or discuss them. The current book gives the students a very nice transition from the classical power systems towards modern systems discussing the effects of renewable energy sources and new aspects of control and operation. It discusses the effects and operation of power-electronics converters and how they are integrated with the conventional power systems. In the photovoltaic systems, it contains very nice design examples. Overall, I found this book a good source for upper-level undergraduates who want to get familiar with smart grids and their design and operation.

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