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Self-Learning Optimal Control of Nonlinear Systems - Adaptive Dynamic Programming Approach (Hardcover, 1st ed. 2018): Qinglai... Self-Learning Optimal Control of Nonlinear Systems - Adaptive Dynamic Programming Approach (Hardcover, 1st ed. 2018)
Qinglai Wei, Ruizhuo Song, Benkai Li, Xiaofeng Lin
R4,144 Discovery Miles 41 440 Ships in 12 - 17 working days

This book presents a class of novel, self-learning, optimal control schemes based on adaptive dynamic programming techniques, which quantitatively obtain the optimal control schemes of the systems. It analyzes the properties identified by the programming methods, including the convergence of the iterative value functions and the stability of the system under iterative control laws, helping to guarantee the effectiveness of the methods developed. When the system model is known, self-learning optimal control is designed on the basis of the system model; when the system model is not known, adaptive dynamic programming is implemented according to the system data, effectively making the performance of the system converge to the optimum. With various real-world examples to complement and substantiate the mathematical analysis, the book is a valuable guide for engineers, researchers, and students in control science and engineering.

Self-Learning Optimal Control of Nonlinear Systems - Adaptive Dynamic Programming Approach (Paperback, Softcover reprint of the... Self-Learning Optimal Control of Nonlinear Systems - Adaptive Dynamic Programming Approach (Paperback, Softcover reprint of the original 1st ed. 2018)
Qinglai Wei, Ruizhuo Song, Benkai Li, Xiaofeng Lin
R4,188 Discovery Miles 41 880 Ships in 10 - 15 working days

This book presents a class of novel, self-learning, optimal control schemes based on adaptive dynamic programming techniques, which quantitatively obtain the optimal control schemes of the systems. It analyzes the properties identified by the programming methods, including the convergence of the iterative value functions and the stability of the system under iterative control laws, helping to guarantee the effectiveness of the methods developed. When the system model is known, self-learning optimal control is designed on the basis of the system model; when the system model is not known, adaptive dynamic programming is implemented according to the system data, effectively making the performance of the system converge to the optimum. With various real-world examples to complement and substantiate the mathematical analysis, the book is a valuable guide for engineers, researchers, and students in control science and engineering.

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