Technical Review And Modeling Of PMSG Wind Energy Conversion System
Details
The destructive phenomenon of global warming is developing to more critical and obvious index that causes the melting of polar ice caps and higher sea levels resulting in less land for an increasing population, along with the severe changes in climate. Essentially, the growth of this harsh trend is primarily due to the increase of the greenhouse gases concentration from burning of the fossil fuels. So, traditional approach of producing energy to fulfill the human demand is no longer appropriate; meanwhile, inception of wind energy electrical power systems will be the alternative technologies to bring a better future for all mankind. This book provides a comprehensive explanation of the wind energy potential evaluation technique and a robust sensorless MPPT controller for variable speed PMSG wind turbine stand-alone system modeled in Matlab/Simulink environment which shows the feasibility of the technologies compared to the conventional electrical power generation. The study of the WECS will assist the professionals in wind electrical power generation system, global academic researchers, industrial engineers, or those who may consider in implementing this system
Autorentext
Dahaman Ishak, PhD; Studied Electrical Engineering at Sheffield University, UK. Senior lecturer and program chairman for Electrical Degree Program in the School of Electrical and Electronic Engineering, Universiti Sains Malaysia.Tow Leong Tiang, MSc; Presently pursuing his PhD study in Electrical Engineering at Universiti Sains Malaysia
Weitere Informationen
- Allgemeine Informationen
- Sprache Englisch
- Gewicht 358g
- Untertitel Wind Energy Potential Assessment And Modeling Of Sensorless MPPT Controller For Variable Speed PMSG Wind Turbine System
- Autor Dahaman Ishak , Tow Leong Tiang
- Titel Technical Review And Modeling Of PMSG Wind Energy Conversion System
- Veröffentlichung 03.09.2012
- ISBN 3659230472
- Format Kartonierter Einband
- EAN 9783659230479
- Jahr 2012
- Größe H220mm x B150mm x T14mm
- Herausgeber LAP LAMBERT Academic Publishing
- Anzahl Seiten 228
- Auflage Aufl.
- GTIN 09783659230479