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Titlebook: H-infinity Control for Nonlinear Descriptor Systems; He-Sheng Wang,Chee-Fai Yung,Fan-Ren Chang Book 2006 Springer-Verlag London 2006 Behav

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期刊全称H-infinity Control for Nonlinear Descriptor Systems
影响因子2023He-Sheng Wang,Chee-Fai Yung,Fan-Ren Chang
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发行地址The first dedicated and up-to-date treatment of control for differential algebraic equation systems in some time.Gives the reader a thorough overview of H-infinity control for descriptor systems inclu
学科分类Lecture Notes in Control and Information Sciences
图书封面Titlebook: H-infinity Control for Nonlinear Descriptor Systems;  He-Sheng Wang,Chee-Fai Yung,Fan-Ren Chang Book 2006 Springer-Verlag London 2006 Behav
影响因子.The authors present a study of the .H.-infinity control problem and related topics for descriptor systems, described by a set of nonlinear differential-algebraic equations. They derive necessary and sufficient conditions for the existence of a controller solving the standard nonlinear .H.-infinity control problem considering both state and output feedback. One such condition for the output feedback control problem to be solvable is obtained in terms of Hamilton–Jacobi inequalities and a weak coupling condition; a parameterization of output feedback controllers solving the problem is also provided. All of these results are then specialized to the linear case. The derivation of state-space formulae for all controllers solving the standard .H.-infinity control problem for descriptor systems is proposed. Among other important topics covered are balanced realization, reduced-order controller design and mixed .H.2./.H.-infinity control. "H-infinity Control for Nonlinear Descriptor Systems" provides a comprehensive introduction and easy access to advanced topics..
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On the optimal size of system model,Consider the standard feedback configuration shown in Fig. 4.1. Let . be a nonlinear system described by the following DAE
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The small angle tagging system of CELLO,The purpose of the second part of the appendix is to review some elements of center manifold theory and extend certain existing results for conventional systems to descriptor systems. The proposed development is rather straightforward but is useful in this monograph. Consider a nonlinear descriptor system described by the following set of DAEs.
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