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Fault Estimation for Network Systems via Intermediate Estimator

Autor Jun-Wei Zhu, Xin Wang, Guang-Hong Yang
en Limba Engleză Paperback – 31 oct 2023
This book is concerned with the fault estimation problem for network systems. Firstly, to improve the existing adaptive fault estimation observer, a novel so-called intermediate estimator is proposed to identify the actuator or sensor faults in dynamic control systems with high accuracy and convergence speed. On this basis, by exploiting the properties of network systems such as multi-agent systems and large-scale interconnected systems, this book introduces the concept of distributed intermediate estimator; faults in different nodes can be estimated simultaneously; meanwhile, satisfactory consensus performances can be obtained via compensation based protocols. Finally, the characteristics of the new fault estimation methodology are verified and discussed by a series of experimental results on networked multi-axis motion control systems. This book can be used as a reference book for researcher and designer in the field of fault diagnosis and fault-tolerant control and can also be usedas a reference book for senior undergraduate and graduate students in colleges and universities. 
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Specificații

ISBN-13: 9789811963230
ISBN-10: 9811963231
Pagini: 187
Ilustrații: XV, 187 p. 87 illus., 81 illus. in color.
Dimensiuni: 155 x 235 mm
Greutate: 0.29 kg
Ediția:1st ed. 2022
Editura: Springer Nature Singapore
Colecția Springer
Locul publicării:Singapore, Singapore

Cuprins

Chapter 1. Introduction.- Chapter 2. Design of nominal intermediate estimator.- Chapter 3. Robust Fault Estimation (FE) for a Network of Dynamical Systems.- Chapter 4. FE based Tracking Control for Multi-Agent Systems (MASs) with undirected graph.- Chapter 5. FE based Tracking Control for MASs under directed graph.- Chapter 6. FE based Tracking Control for MASs with mismatched disturbances.- Chapter 7. Applications on Multi-Axis Motion Control Systems.- Chapter 8. Conclusions and Future Research Directions.

Notă biografică

Dr. Jun-wei Zhu received the Ph.D. degree in Control theory and Engineering from Northeastern University, Shenyang, in Jul. 2016. His research is mainly focused on Fault Diagnosis, Fault-Tolerant control, and Control of Network Systems. Especially, his major research results are mostly about the fault estimation observer design and the observer-based fault-tolerant control. During the doctorate study period, he has participated in many academic conferences, such as WCICA, CCC, CCDC. Besides, he was also a reviewer for some well-known scientific magazines in the field of control science, for instance, IEEE Transactions on Automatic Control, Automatica, International Journal of Robust and Nonlinear Control, etc.

Textul de pe ultima copertă

This book is concerned with the fault estimation problem for network systems. Firstly, to improve the existing adaptive fault estimation observer, a novel so-called intermediate estimator is proposed to identify the actuator or sensor faults in dynamic control systems with high accuracy and convergence speed. On this basis, by exploiting the properties of network systems such as multi-agent systems and large-scale interconnected systems, this book introduces the concept of distributed intermediate estimator; faults in different nodes can be estimated simultaneously; meanwhile, satisfactory consensus performances can be obtained via compensation based protocols. Finally, the characteristics of the new fault estimation methodology are verified and discussed by a series of experimental results on networked multi-axis motion control systems. This book can be used as a reference book for researcher and designer in the field of fault diagnosis and fault-tolerant control and can also be usedas a reference book for senior undergraduate and graduate students in colleges and universities. 

Caracteristici

Is the first professional book on the methodology of intermediate estimator Introduces the latest works on the development of fault estimation techniques Presents fault estimation methods with higher reliability for network systems compared with the existing approaches