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Robust Output LQ Optimal Control via Integral Sliding Modes (Hardcover, 2014 ed.): Leonid Fridman, Alexander Poznyak, Francisco... Robust Output LQ Optimal Control via Integral Sliding Modes (Hardcover, 2014 ed.)
Leonid Fridman, Alexander Poznyak, Francisco Javier Bejarano
R2,842 R1,807 Discovery Miles 18 070 Save R1,035 (36%) Ships in 12 - 17 working days

Featuring original research from well-known experts in the field of sliding mode control, this book presents new design schemes for a useful and practical optimal control with very few impractical assumptions. The results presented allow optimal control theory to grow in its applicability to real-world systems. On the cutting-edge of optimal control research, this book is an excellent resource for both graduate students and researchers in engineering, mathematics, and optimal control.

Attractive Ellipsoids in Robust Control (Hardcover, 2014 ed.): Alexander Poznyak, Andrey Polyakov, Vadim Azhmyakov Attractive Ellipsoids in Robust Control (Hardcover, 2014 ed.)
Alexander Poznyak, Andrey Polyakov, Vadim Azhmyakov
R3,510 Discovery Miles 35 100 Ships in 12 - 17 working days

This monograph introduces a newly developed robust-control design technique for a wide class of continuous-time dynamical systems called the "attractive ellipsoid method." Along with a coherent introduction to the proposed control design and related topics, the monograph studies nonlinear affine control systems in the presence of uncertainty and presents a constructive and easily implementable control strategy that guarantees certain stability properties. The authors discuss linear-style feedback control synthesis in the context of the above-mentioned systems. The development and physical implementation of high-performance robust-feedback controllers that work in the absence of complete information is addressed, with numerous examples to illustrate how to apply the attractive ellipsoid method to mechanical and electromechanical systems. While theorems are proved systematically, the emphasis is on understanding and applying the theory to real-world situations. Attractive Ellipsoids in Robust Control will appeal to undergraduate and graduate students with a background in modern systems theory as well as researchers in the fields of control engineering and applied mathematics.

Robust Output LQ Optimal Control via Integral Sliding Modes (Paperback, Softcover reprint of the original 1st ed. 2014): Leonid... Robust Output LQ Optimal Control via Integral Sliding Modes (Paperback, Softcover reprint of the original 1st ed. 2014)
Leonid Fridman, Alexander Poznyak, Francisco Javier Bejarano
R1,888 Discovery Miles 18 880 Ships in 10 - 15 working days

Featuring original research from well-known experts in the field of sliding mode control, this book presents new design schemes for a useful and practical optimal control with very few impractical assumptions. The results presented allow optimal control theory to grow in its applicability to real-world systems. On the cutting-edge of optimal control research, this book is an excellent resource for both graduate students and researchers in engineering, mathematics, and optimal control.

Attractive Ellipsoids in Robust Control (Paperback, Softcover reprint of the original 1st ed. 2014): Alexander Poznyak, Andrey... Attractive Ellipsoids in Robust Control (Paperback, Softcover reprint of the original 1st ed. 2014)
Alexander Poznyak, Andrey Polyakov, Vadim Azhmyakov
R3,805 Discovery Miles 38 050 Ships in 10 - 15 working days

This monograph introduces a newly developed robust-control design technique for a wide class of continuous-time dynamical systems called the "attractive ellipsoid method." Along with a coherent introduction to the proposed control design and related topics, the monograph studies nonlinear affine control systems in the presence of uncertainty and presents a constructive and easily implementable control strategy that guarantees certain stability properties. The authors discuss linear-style feedback control synthesis in the context of the above-mentioned systems. The development and physical implementation of high-performance robust-feedback controllers that work in the absence of complete information is addressed, with numerous examples to illustrate how to apply the attractive ellipsoid method to mechanical and electromechanical systems. While theorems are proved systematically, the emphasis is on understanding and applying the theory to real-world situations. Attractive Ellipsoids in Robust Control will appeal to undergraduate and graduate students with a background in modern systems theory as well as researchers in the fields of control engineering and applied mathematics.

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