
Robust Controllers Design for Load Frequency Control in Power Systems
State-Space and Polynomial Techniques
LAP Lambert Academic Publishing
Published on 29. June 2018
Book
Paperback/Softback
176 pages
978-613-9-86690-8 (ISBN)
Description
The Main focus of this book is: 1. Studying and analyzing of the uncertain behavior of the steam turbine system by identifying the uncertain parameters in the plant which have a direct effect on the system's performance and representing these parameters together with the neglected dynamics of the plant by a single complex perturbation from which the uncertainty weight will be derived. 2. Synthesizing a sub-optimal H-infinity robust controller for the steam turbine system using a state-space approach and testing the robust stability and performance of the system with the existence of the quantified uncertainty. 3. Designing an optimal H-infinity robust controller for the steam turbine system using a polynomial approach and evaluating the system stability and performance under the same considered uncertainty but with additive representation. 4. Evaluating the proposed controllers by making a comparative study between them in time and frequency domains. 5. Designing and testing a sub-optimal multi-variable H-infinity robust controller for boiler- turbine system based on the linearized model.
More details
Language
English
Product notice
Paperback (trade)
Unsewn / adhesive bound
Dimensions
Height: 220 mm
Width: 150 mm
Thickness: 12 mm
Weight
280 gr
ISBN-13
978-613-9-86690-8 (9786139866908)
Copyright in bibliographic data and cover images is held by Nielsen Book Services Limited or by the publishers or by their respective licensors: all rights reserved.
Schweitzer Classification
Persons
Ibraheem K. Ibraheem received the Ph.D. degree from the Baghdad University/Electrical Department in 2007. His research interests are nonlinear control and disturbance observers. Rami A. Maher received his PhD degree in 1986 from VAAZ-Brno-Czechoslovakia. His main research interests include optimal control, and project management.