Novel Observer-Based Suboptimal Digital Tracker for a Class of Time-Delay Singular Systems
Author(s) -
Nien-Tsu Hu,
Ter-Feng Wu,
Sendren Sheng-Dun Xu,
HsuChih Huang
Publication year - 2013
Publication title -
journal of applied mathematics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.307
H-Index - 43
eISSN - 1687-0042
pISSN - 1110-757X
DOI - 10.1155/2013/150590
Subject(s) - control theory (sociology) , computer science , state vector , class (philosophy) , discretization , time domain , quadratic equation , observer (physics) , discrete time and continuous time , mathematics , digital control , control (management) , electronic engineering , mathematical analysis , statistics , physics , geometry , classical mechanics , quantum mechanics , artificial intelligence , engineering , computer vision
This paper presents a novel suboptimal digital tracker for a class of time-delay singular systems. First, some existing techniques are utilized to obtain an equivalent regular time-delay system, which has a direct transmission term from input to output. The equivalent regular time-delay system is important as it enables the optimal control theory to be conveniently combined with the digital redesign approach. The linear quadratic performance index, specified in the continuous-time domain, can be discretized into an equivalent decoupled discrete-time performance index using the newly developed extended delay-free model. Additionally, although the extended delay-free model is large, its advantage is the elimination of all delay terms (which included a new extended state vector), simplifying the proposed approach. As a result, the proposed approach can be applied to a class of time-delay singular systems. An illustrative example demonstrates the effectiveness of the proposed design methodology
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