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Discrete-time control systems

By: Ogata, Katsuhiko
Material type: TextTextLanguage: English Publisher: Noida Pearson India c2015Edition: 2nd edDescription: xi, 745p.; 23cmISBN: 9789332549661Subject(s): Engineering | Automatic control engineering | Discrete-time systems | Control theoryDDC classification: 629.83 OGA/D Online resources: Publisher's URL Summary: Katsuhiko Ogata's Discrete-Time Control Systems presents a revised edition of the book that offers an ample treatment of discrete-time control systems. Designed for specific courses on the subject, for both undergraduate and postgraduate students, this book offers a gradual development of the subject. It emphasizes the fundamental concepts and avoids complex mathematical arguments. Ogata kept the text lucid and clear to make it easy-to-understand for the readers. It includes in-depth explanation of state observer design, quadratic optimal control, and pole placement. The book elucidates the treatment of the pole-placement design with minimum-order observer with the help of two main approaches. These are the state-space approach and the polynomial equations approach.
List(s) this item appears in: New Arrivals - 25th Aug 2025
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Reference Reference CENTRAL LIBRARY
Reference (Sahyadri Campus)
Reference 629.83 OGA/D Not for loan 09651
Book Book CENTRAL LIBRARY
General Stack (Sahyadri Campus)
629.83 OGA/D Available 09652

Katsuhiko Ogata's Discrete-Time Control Systems presents a revised edition of the book that offers an ample treatment of discrete-time control systems. Designed for specific courses on the subject, for both undergraduate and postgraduate students, this book offers a gradual development of the subject. It emphasizes the fundamental concepts and avoids complex mathematical arguments. Ogata kept the text lucid and clear to make it easy-to-understand for the readers. It includes in-depth explanation of state observer design, quadratic optimal control, and pole placement. The book elucidates the treatment of the pole-placement design with minimum-order observer with the help of two main approaches. These are the state-space approach and the polynomial equations approach.

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