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Aguilar, Luis T.; Boiko, Igor; Fridman, Leonid; Iriarte, Rafael - Self-Oscillations in Dynamic Systems - 9783319233024 - V9783319233024
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Self-Oscillations in Dynamic Systems

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Description for Self-Oscillations in Dynamic Systems Hardback. Self-Oscillations in Dynamic Systems Series: Systems & Control: Foundations and Applications. Num Pages: 172 pages, 4 black & white tables, biography. BIC Classification: GPFC; TBD; TJFM. Category: (P) Professional & Vocational. Dimension: 164 x 246 x 16. Weight in Grams: 402.

This monograph presents a simple and efficient two-relay control algorithm for generation of self-excited oscillations of a desired amplitude and frequency in dynamic systems. Developed by the authors, the two-relay controller consists of two relays switched by the feedback received from a linear or nonlinear system, and represents a new approach to the self-generation of periodic motions in underactuated mechanical systems.

The first part of the book explains the design procedures for two-relay control using three different methodologies – the describing-function method, Poincaré maps, and the locus-of-a perturbed-relay-system method – and concludes with stability analysis of designed periodic oscillations.

Two methods to ... Read more

Self-Oscillations in Dynamic Systems will appeal to engineers, researchers, and graduate students working on the tracking and self-generation of periodic motion of electromechanical systems, including non-minimum-phase systems. It will also be of interest to mathematicians working on analysis of periodic solutions.

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Product Details

Format
Hardback
Publication date
2015
Publisher
Birkhauser Verlag AG Switzerland
Number of pages
172
Condition
New
Series
Systems & Control: Foundations and Applications
Number of Pages
158
Place of Publication
Basel, Switzerland
ISBN
9783319233024
SKU
V9783319233024
Shipping Time
Usually ships in 15 to 20 working days
Ref
99-15

Reviews for Self-Oscillations in Dynamic Systems
“The book contains ten chapters presented in three parts. … The intended audience for this book consists of mechanical and control scientists and engineers, as well as graduate and Ph.D. students interested in the theory of self-oscillation generation in underactuated dynamic systems.” (Clementina D. Mladenova, Mathematical Reviews, June, 2016)

Goodreads reviews for Self-Oscillations in Dynamic Systems


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