This established and authoritative text focuses on the design and analysis of nonlinear control systems. The author considers the latest research results and techniques in this updated and extended edition.
Topics covered include:
. local and global decompositions of control systems;
. input-ouput maps and realization theory;
. nonlinear feedback for single-input/single-output systems and multi-input/multi-output systems;
. applications of state feedback;
. output regulation and
. global stabilization and disturbance attenuation.
Examples are given from mechanical, electrical and aerospace engineering. The approach consists of a rigorous mathematical formulation of control problems and respective methods of solution. The two appendices outline the most important concepts of differential geometry and present some specific data not often found in other standard works. This makes Nonlinear Control Systems suitable as a graduate and undergraduate text and as a source of reference.
Topics covered include:
. local and global decompositions of control systems;
. input-ouput maps and realization theory;
. nonlinear feedback for single-input/single-output systems and multi-input/multi-output systems;
. applications of state feedback;
. output regulation and
. global stabilization and disturbance attenuation.
Examples are given from mechanical, electrical and aerospace engineering. The approach consists of a rigorous mathematical formulation of control problems and respective methods of solution. The two appendices outline the most important concepts of differential geometry and present some specific data not often found in other standard works. This makes Nonlinear Control Systems suitable as a graduate and undergraduate text and as a source of reference.
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From the reviews:
Isidori's book is essential for anyone preparing for serious reading or basic research in the differential geometric approach to control theory and will not disappoint those mathematically trained. I have observed its use in the hands of two teachers other than the author; the students enjoyed it and made good use of it later. There is no universal solvent for nonlinear control problems, but the methods presented here are powerful.
IEEE Transactions on Automatic Control 43 (1997) 1043-1044 (Reviewer: David L. Elliott)
Isidori's book is essential for anyone preparing for serious reading or basic research in the differential geometric approach to control theory and will not disappoint those mathematically trained. I have observed its use in the hands of two teachers other than the author; the students enjoyed it and made good use of it later. There is no universal solvent for nonlinear control problems, but the methods presented here are powerful.
IEEE Transactions on Automatic Control 43 (1997) 1043-1044 (Reviewer: David L. Elliott)