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Classical Feedback Control with Nonlinear Multi-Loop Systems - With MATLAB (R) and Simulink (R), Third Edition (Hardcover, 3rd... Classical Feedback Control with Nonlinear Multi-Loop Systems - With MATLAB (R) and Simulink (R), Third Edition (Hardcover, 3rd edition)
Boris J. Lurie, Paul Enright
R3,700 Discovery Miles 37 000 Ships in 10 - 15 working days

Classical Feedback Control with Nonlinear Multi-Loop Systems describes the design of high-performance feedback control systems, emphasizing the frequency-domain approach widely used in practical engineering. It presents design methods for high-order nonlinear single- and multi-loop controllers with efficient analog and digital implementations. Bode integrals are employed to estimate the available system performance and to determine the ideal frequency responses that maximize the disturbance rejection and feedback bandwidth. Nonlinear dynamic compensators provide global stability and improve transient responses. This book serves as a unique text for an advanced course in control system engineering, and as a valuable reference for practicing engineers competing in today's industrial environment.

Classical Feedback Control with Nonlinear Multi-Loop Systems - With MATLAB (R) and Simulink (R), Third Edition (Paperback, 3rd... Classical Feedback Control with Nonlinear Multi-Loop Systems - With MATLAB (R) and Simulink (R), Third Edition (Paperback, 3rd edition)
Boris J. Lurie, Paul Enright
R1,459 Discovery Miles 14 590 Ships in 10 - 15 working days

Classical Feedback Control with Nonlinear Multi-Loop Systems describes the design of high-performance feedback control systems, emphasizing the frequency-domain approach widely used in practical engineering. It presents design methods for high-order nonlinear single- and multi-loop controllers with efficient analog and digital implementations. Bode integrals are employed to estimate the available system performance and to determine the ideal frequency responses that maximize the disturbance rejection and feedback bandwidth. Nonlinear dynamic compensators provide global stability and improve transient responses. This book serves as a unique text for an advanced course in control system engineering, and as a valuable reference for practicing engineers competing in today's industrial environment.

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