Discrete-Time Control System Design with Applications

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106,99 

ISBN: 1493940953
ISBN 13: 9781493940950
Autor: Rabbath, C A/Léchevin, N
Verlag: Springer Verlag GmbH
Umfang: xvii, 171 S., 85 s/w Illustr., 20 farbige Illustr., 171 p. 105 illus., 20 illus. in color.
Erscheinungsdatum: 23.08.2016
Auflage: 1/2014
Produktform: Kartoniert
Einband: Kartoniert

This book presents practical techniques of discrete-time control system design. In general, the design techniques lead to low-order dynamic compensators that ensure satisfactory closed-loop performance for a wide range of sampling rates. The theory is given in the form of theorems, lemmas, and propositions. The design of the control systems is presented as step-by-step procedures and algorithms. The proposed feedback control schemes are applied to well-known dynamic system models.This book also discusses:Closed-loop performance of generic models of mobile robot and airborne pursuer dynamic systems under discrete-time feedback control with limited computing capabilitiesConcepts of discrete-time models and sampled-data models of continuous-time systems, for both single- and dual-rate operationLocal versus global digital redesignOptimal, closed-loop digital redesign methodsPlant input mapping designGeneralized holds and samplers for use in feedback control loops,Numerical simulation of fixed-point arithmetic implementationFlatness-based discrete-time controlThe effect of the sampling or control update rate on closed-loop performanceDelta and shift operators

Artikelnummer: 9752681 Kategorie:

Beschreibung

This unique book provides a bridge between digital control theory and vehicle guidance and control practice. It presents practical techniques of digital redesign and direct discrete-time design suitable for a real-time implementation of controllers and guidance laws at multiple rates and with and computational techniques. The theory of digital control is given as theorems, lemmas, and propositions. The design of the digital guidance and control systems is illustrated by means of step-by-step procedures, algorithms, and case studies. The systems proposed are applied to realistic models of unmanned systems and missiles, and digital implementation.

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