1.

Record Nr.

UNISALENTO991003213579707536

Autore

Downey, Glanville

Titolo

Justinian and the imperial office / by Glanville Downey

Pubbl/distr/stampa

Cincinnati : The university of Cincinnati, 1968

Descrizione fisica

31 p. ; 24 cm.

Collana

Lectures in memory of Louise Taft Semple. Ser. 2.

Soggetti

Giustiniano <imperatore d'Oriente ; 1.>

Lingua di pubblicazione

Inglese

Formato

Materiale a stampa

Livello bibliografico

Monografia

2.

Record Nr.

UNINA9910437913303321

Autore

Yang Chunyu

Titolo

Stability analysis and design for nonlinear singular systems / / Chunyu Yang, Qingling Zhang, and Linna Zhou

Pubbl/distr/stampa

Heidelberg ; ; New York, : Springer, c2013

ISBN

9783642321443

3642321445

Edizione

[1st ed. 2013.]

Descrizione fisica

1 online resource (XII, 212 p. 32 illus.)

Collana

Lecture notes in control and information sciences, , 0170-8643 ; ; 435

Altri autori (Persone)

ZhangQingling

ZhouLinna

Disciplina

003.75

Soggetti

Nonlinear systems

Control theory

System analysis

Lingua di pubblicazione

Inglese

Formato

Materiale a stampa

Livello bibliografico

Monografia

Note generali

Bibliographic Level Mode of Issuance: Monograph

Nota di bibliografia

Includes bibliographical references (p. [197]-208) and index.

Nota di contenuto

Practical stability analysis and synthesis for nonlinear singular systems                          -- 3 Strongly absolute stability analysis for



Lur’e singular  -- 4 Input-to-state stability analysis and design for Lur’e singular systems  -- 5 Observer design for nonlinear singular systems                                             -- 6 Absolute stability of Lur’e singularly perturbed systems                                     -- 7 Multi-objective control for T-S fuzzy singularly perturbed systems. 4 Input-to-state stability analysis and design for Lur’e singular systems  -- 5 Observer design for nonlinear singular systems                                             -- 6 Absolute stability of Lur’e singularly perturbed systems                                     -- 7 Multi-objective control for T-S fuzzy singularly perturbed systems.

Sommario/riassunto

Singular systems which are also referred to as descriptor systems, semi-state systems, differential- algebraic systems or generalized state-space systems have attracted much attention because of their extensive applications in the Leontief dynamic model, electrical and mechanical models, etc. This monograph presented up-to-date research developments and references on stability analysis and design of nonlinear singular systems. It investigated the problems of practical stability, strongly absolute stability, input-state stability and observer design for nonlinear singular systems and the problems of absolute stability and multi-objective control for nonlinear singularly perturbed systems by using Lyapunov stability theory, comparison principle, S-procedure and linear matrix inequality (LMI), etc. Practical stability, being quite different from stability in the sense of Lyapunov, is a significant performance specification from an engineering point of view. The basic concepts and results on practical stability for standard state-space systems were generalized to singular systems. For Lur’e type descriptor systems (LDS) which were the feedback interconnection of a descriptor system with a static nonlinearity, strongly absolute stability was defined and Circle criterion and Popov criterion were derived. The notion of input-state stability (ISS) for nonlinear singular systems was defined based on the concept of ISS for standard state-space systems and the characteristics of singular systems. LMI-based sufficient conditions for ISS of Lur’e singular systems were proposed. Furthermore, observer design for nonlinear singular systems was studied and some observer design methods were proposed by the obtained stability results and convex optimization algorithms. Finally, absolute stability and multi-objective control of nonlinear singularly perturbed systems were considered. By Lyapunov functions, absolute stability criteria of Lur’e singularly perturbed systems were proposed and multi-objective control of T-S fuzzy singularly perturbed systems was achieved. Compared with the existing results, the obtained methods do not depend on the decomposition of the original system and can produce a determinate upper bound for the singular perturbation parameter.