Model-based Nonlinear Control of Aeroengines

Model-based Nonlinear Control of Aeroengines

EnglishHardbackPrint on demand
Wang, Jiqiang
Springer Verlag, Singapore
EAN: 9789811644528
Print on demand
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Detailed information

This book aims to develop systematic design methodologies to model-based nonlinear control of aeroengines, focusing on (1) modelling of aeroengine systems—both component-level and identification-based models will be extensively studied and compared; and (2) advanced nonlinear control designs—set-point control, transient control and limit-protection control approaches will all be investigated. The model-based design has been one of the pivotal technologies to advanced control and health management of propulsion systems. It can fulfil advanced designs such as fault-tolerant control, engine modes control and direct thrust control. As a consequence, model-based design has become an important research area in the field of aeroengines due to its theoretical interests and engineering significance. One of the central issues in model-based controls is the tackling of nonlinearities. There are publications concerning with either nonlinear modelling or nonlinear controls; yet, they are scattered throughout the literature. It is time to provide a comprehensive summary of model-based nonlinear controls. Consequently, a series of important results are obtained and a systematic design methodology is developed which provides consistently enhanced performance over a large flight/operational envelope, and it is thus expected to provide useful guidance to practical engineering in aeroengine industry and research. 


EAN 9789811644528
ISBN 9811644527
Binding Hardback
Publisher Springer Verlag, Singapore
Publication date August 18, 2021
Pages 238
Language English
Dimensions 235 x 155
Country Singapore
Readership Professional & Scholarly
Authors Hu, Zhongzhi; Wang, Jiqiang; Zhang Weicun
Illustrations 101 Illustrations, color; 31 Illustrations, black and white; XIX, 238 p. 132 illus., 101 illus. in color.
Edition 1st ed. 2022