Digital control design of decentralized stochastic singularly-perturbed large-scale actuator type systems with multiple time-varying delays

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10 Citations (Scopus)

Abstract

This paper develops an optimal robust control algorithm for finding digital control of decentralized stochastic singularly-perturbed large-scale actuator type systems with multiple time-varying delays. Due to the derived algorithm concerns at each moment, the found controller is also suitable in the time varying condition. Moreover, this type of system possesses the fast response characteristics of the subsystems. The system order can be reduced and the analysis process can be simplified. This noise-disturbed, time varying and multiple delay system can be often seen in practical computer controlled largescale systems such as electric power systems, communication networks, cyber networks, and aerospace systems. Finally, the optimal cost is also obtained.

Original languageEnglish
Pages (from-to)3303-3311
Number of pages9
JournalInternational Journal of Innovative Computing, Information and Control
Volume5
Issue number10
Publication statusPublished - 2009 Oct 1

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Multiple Delays
Digital Control
Singularly Perturbed
Time-varying Delay
Type Systems
Control Design
Decentralized
Actuator
Actuators
Robust control
Electric power systems
Telecommunication networks
Electric Power System
Controllers
Robust Algorithm
Delay Systems
Robust Control
Communication Networks
Control Algorithm
Costs

All Science Journal Classification (ASJC) codes

  • Software
  • Theoretical Computer Science
  • Information Systems
  • Computational Theory and Mathematics

Cite this

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abstract = "This paper develops an optimal robust control algorithm for finding digital control of decentralized stochastic singularly-perturbed large-scale actuator type systems with multiple time-varying delays. Due to the derived algorithm concerns at each moment, the found controller is also suitable in the time varying condition. Moreover, this type of system possesses the fast response characteristics of the subsystems. The system order can be reduced and the analysis process can be simplified. This noise-disturbed, time varying and multiple delay system can be often seen in practical computer controlled largescale systems such as electric power systems, communication networks, cyber networks, and aerospace systems. Finally, the optimal cost is also obtained.",
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AU - Chiang, Jiunn Shean

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