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Dynamic Programming For Impulse Feedback And Fast Controls The Linear Systems Case 1st Ed Alexander B Kurzhanski

  • SKU: BELL-10484292
Dynamic Programming For Impulse Feedback And Fast Controls The Linear Systems Case 1st Ed Alexander B Kurzhanski
$ 31.00 $ 45.00 (-31%)

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Dynamic Programming For Impulse Feedback And Fast Controls The Linear Systems Case 1st Ed Alexander B Kurzhanski instant download after payment.

Publisher: Springer London
File Extension: PDF
File size: 4.96 MB
Author: Alexander B. Kurzhanski, Alexander N. Daryin
ISBN: 9781447174363, 9781447174370, 1447174364, 1447174372
Language: English
Year: 2020
Edition: 1st ed.

Product desciption

Dynamic Programming For Impulse Feedback And Fast Controls The Linear Systems Case 1st Ed Alexander B Kurzhanski by Alexander B. Kurzhanski, Alexander N. Daryin 9781447174363, 9781447174370, 1447174364, 1447174372 instant download after payment.

Dynamic Programming for Impulse Feedback and Fast Controls offers a description of feedback control in the class of impulsive inputs. This book deals with the problem of closed-loop impulse control based on generalization of dynamic programming techniques in the form of variational inequalities of the Hamilton–Jacobi–Bellman type. It provides exercises and examples in relation to software, such as techniques for regularization of ill-posed problems. It also gives an introduction to applications such as hybrid dynamics, control in arbitrary small time, and discontinuous trajectories.

This book walks the readers through:

  • the design and description of feedback solutions for impulse controls;
  • the explanation of impulses of higher order that are derivatives of delta functions;
  • the description of their physically realizable approximations - the fast controls and their approximations;
  • the treatment of uncertainty in impulse control and the applications of impulse feedback.

Of interest to both academics and graduate students in the field of control theory and applications, the book also protects users from common errors , such as inappropriate solution attempts, by indicating Hamiltonian techniques for hybrid systems with resets.

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