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Control And Estimation Of Systems With Input Output Delays 1st Edition Huanshui Zhang Lihua Xie

  • SKU: BELL-2090710
Control And Estimation Of Systems With Input Output Delays 1st Edition Huanshui Zhang Lihua Xie
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Control And Estimation Of Systems With Input Output Delays 1st Edition Huanshui Zhang Lihua Xie instant download after payment.

Publisher: Springer
File Extension: PDF
File size: 1.96 MB
Pages: 227
Author: Huanshui Zhang; Lihua Xie
ISBN: 9783540711186, 354071118X
Language: English
Year: 2007
Edition: 1

Product desciption

Control And Estimation Of Systems With Input Output Delays 1st Edition Huanshui Zhang Lihua Xie by Huanshui Zhang; Lihua Xie 9783540711186, 354071118X instant download after payment.

Time delays exist in many engineering systems such as transportation, communication, process engineering and networked control systems. In recent years, time delay systems have attracted recurring interests from research community. Much of the effort has been focused on stability analysis and stabilization of time delay systems using the so-called Lyapunov-Krasovskii functional together with a linear matrix inequality approach, which provides an efficient numerical tool for handling systems with delays in state and/or inputs. Recently, some more interesting and fundamental development for systems with input/output (i/o) delays has been made using time domain or frequency domain approaches. These approaches lead to analytical solutions to time delay problems in terms of Riccati equations or spectral factorizations. This monograph presents simple analytical solutions to control and estimation problems for systems with multiple i/o delays via elementary tools such as projection. We propose a re-organized innovation analysis approach for delay systems and establish a duality between optimal control of systems with multiple input delays and smoothing estimation for delay free systems. These appealing new techniques are applied to solve control and estimation problems for systems with multiple i/o delays and state delays under both the H2 and H-infinity performance criteria.

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