DocumentCode :
231054
Title :
Eigenvalue structure of the predictor feedback for discrete-time LTI systems
Author :
Mateo, Lorlynn A. ; Hirata, Kazufumi
Author_Institution :
Grad. Sch. of Inf. Sci., Nara Inst. of Sci. & Technol., Ikoma, Japan
fYear :
2014
fDate :
Feb. 26 2014-March 1 2014
Firstpage :
67
Lastpage :
72
Abstract :
The discrete-time predictor feedback system was designed to compensate for constant input delays based on d-step ahead state predictions in discrete-time linear time-invariant systems. The entire spectrum, initially investigated by numerical computation, shows that aside from the eigenvalues of A + BK, there are other eigenvalues located about the origin. Existing literature only focuses on the spectrum coinciding with that of A + BK, but, in this study, we extended previous results by considering the full state of the system to obtain the eigenvalues mathematically. In contrast to the continuous-time case, it is important to note that the discrete-time delay system is finite-dimensional. From this viewpoint, we started our analysis from the state space representation to construct a proof that derives the poles of the closed-loop system. Furthermore, as a preliminary step, we attempt a frequency domain analysis by considering nonzero initial conditions in taking the Z-transform of the system with an example.
Keywords :
closed loop systems; compensation; continuous time systems; control system synthesis; delays; discrete time systems; eigenvalues and eigenfunctions; feedback; frequency-domain analysis; multidimensional systems; numerical analysis; state-space methods; transforms; Z-transform; closed-loop system; constant input delay compensation; continuous-time system; d-step ahead state predictions; discrete-time LTI systems; discrete-time linear time-invariant systems; discrete-time predictor feedback system design; eigenvalue structure; finite-dimensional discrete-time delay system; frequency domain analysis; nonzero initial conditions; numerical computation; state space representation; Closed loop systems; Delay systems; Delays; Eigenvalues and eigenfunctions; Equations; Mathematical model; Time factors;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Industrial Technology (ICIT), 2014 IEEE International Conference on
Conference_Location :
Busan
Type :
conf
DOI :
10.1109/ICIT.2014.6894974
Filename :
6894974
Link To Document :
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