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Dynamics of Underactuated Multibody Systems - Modeling, Control and Optimal Design (Hardcover, 2014 ed.): Robert Seifried Dynamics of Underactuated Multibody Systems - Modeling, Control and Optimal Design (Hardcover, 2014 ed.)
Robert Seifried
R3,572 Discovery Miles 35 720 Ships in 10 - 15 working days

Underactuated multibody systems are intriguing mechatronic systems, as they posses fewer control inputs than degrees of freedom. Some examples are modern light-weight flexible robots and articulated manipulators with passive joints. This book investigates such underactuated multibody systems from an integrated perspective. This includes all major steps from the modeling of rigid and flexible multibody systems, through nonlinear control theory, to optimal system design. The underlying theories and techniques from these different fields are presented using a self-contained and unified approach and notation system. Subsequently, the book focuses on applications to large multibody systems with multiple degrees of freedom, which require a combination of symbolical and numerical procedures. Finally, an integrated, optimization-based design procedure is proposed, whereby both structural and control design are considered concurrently. Each chapter is supplemented by illustrated examples.

Dynamics of Underactuated Multibody Systems - Modeling, Control and Optimal Design (Paperback, Softcover reprint of the... Dynamics of Underactuated Multibody Systems - Modeling, Control and Optimal Design (Paperback, Softcover reprint of the original 1st ed. 2014)
Robert Seifried
R3,579 Discovery Miles 35 790 Ships in 10 - 15 working days

Underactuated multibody systems are intriguing mechatronic systems, as they posses fewer control inputs than degrees of freedom. Some examples are modern light-weight flexible robots and articulated manipulators with passive joints. This book investigates such underactuated multibody systems from an integrated perspective. This includes all major steps from the modeling of rigid and flexible multibody systems, through nonlinear control theory, to optimal system design. The underlying theories and techniques from these different fields are presented using a self-contained and unified approach and notation system. Subsequently, the book focuses on applications to large multibody systems with multiple degrees of freedom, which require a combination of symbolical and numerical procedures. Finally, an integrated, optimization-based design procedure is proposed, whereby both structural and control design are considered concurrently. Each chapter is supplemented by illustrated examples.

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