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Intelligent Robotics and Applications - 11th International Conference, ICIRA 2018, Newcastle, NSW, Australia, August 9-11, 2018, Proceedings, Part II (Paperback, 1st ed. 2018)
Zhiyong Chen, Alexandre Mendes, Yamin Yan, Shifeng Chen
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R1,595
Discovery Miles 15 950
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Ships in 10 - 15 working days
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The two volume set LNAI 10984 and LNAI 10985 constitutes the
refereed proceedings of the 11th International Conference on
Intelligent Robotics and Applications, ICIRA 2018, held in
Newcastle, NSW, Australia, in August 2018. The 81 papers presented
in the two volumes were carefully reviewed and selected from 129
submissions. The papers in the first volume of the set are
organized in topical sections on multi-agent systems and
distributed control; human-machine interaction; rehabilitation
robotics; sensors and actuators; and industrial robot and robot
manufacturing. The papers in the second volume of the set are
organized in topical sections on robot grasping and control; mobile
robotics and path planning; robotic vision, recognition and
reconstruction; and robot intelligence and learning.
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Intelligent Robotics and Applications - 11th International Conference, ICIRA 2018, Newcastle, NSW, Australia, August 9-11, 2018, Proceedings, Part I (Paperback, 1st ed. 2018)
Zhiyong Chen, Alexandre Mendes, Yamin Yan, Shifeng Chen
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R3,018
Discovery Miles 30 180
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Ships in 10 - 15 working days
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The two volume set LNAI 10984 and LNAI 10985 constitutes the
refereed proceedings of the 11th International Conference on
Intelligent Robotics and Applications, ICIRA 2018, held in
Newcastle, NSW, Australia, in August 2018. The 81 papers presented
in the two volumes were carefully reviewed and selected from 129
submissions. The papers in the first volume of the set are
organized in topical sections on multi-agent systems and
distributed control; human-machine interaction; rehabilitation
robotics; sensors and actuators; and industrial robot and robot
manufacturing. The papers in the second volume of the set are
organized in topical sections on robot grasping and control; mobile
robotics and path planning; robotic vision, recognition and
reconstruction; and robot intelligence and learning.
The core of this textbook is a systematic and self-contained
treatment of the nonlinear stabilization and output regulation
problems. Its coverage embraces both fundamental concepts and
advanced research outcomes and includes many numerical and
practical examples. Several classes of important uncertain
nonlinear systems are discussed. The state-of-the art solution
presented uses robust and adaptive control design ideas in an
integrated approach which demonstrates connections between global
stabilization and global output regulation allowing both to be
treated as stabilization problems. Stabilization and Regulation of
Nonlinear Systems takes advantage of rich new results to give
students up-to-date instruction in the central design problems of
nonlinear control, problems which are a driving force behind the
furtherance of modern control theory and its application. The
diversity of systems in which stabilization and output regulation
become significant concerns in the mathematical formulation of
practical control solutions-whether in disturbance rejection in
flying vehicles or synchronization of Lorenz systems with harmonic
systems-makes the text relevant to readers from a wide variety of
backgrounds. Many exercises are provided to facilitate study and
solutions are freely available to instructors via a download from
springerextras.com. Striking a balance between rigorous
mathematical treatment and engineering practicality, Stabilization
and Regulation of Nonlinear Systems is an ideal text for graduate
students from many engineering and applied-mathematical disciplines
seeking a contemporary course in nonlinear control. Practitioners
and academic theorists will also find this book a useful reference
on recent thinking in this field.
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