DocumentCode :
3064543
Title :
On the dual-Kernel, matric convolution integral in Discrete/Continuous control theory; exact, explicit, closed-form expressions for some simple cases
Author :
Hunt, Ashley ; Johnson, C.D.
Author_Institution :
ECE Dept., Univ. of Alabama in Huntsville, Huntsville, AL
fYear :
2009
fDate :
15-17 March 2009
Firstpage :
295
Lastpage :
299
Abstract :
In the generalized-version of modern, MIMO discrete-time control, known as Discrete/Continuous (D/C) Control Theory, the traditional matric convolution integral B in the traditional, exact, discrete-time state-model: x((k +1)T) = Ax(kT)+ Bu(kT) is replaced by a more general convolution-matrix BH that has two independent kernels, which evolve in counterflow directions. The numerical-evaluation of the generalized matric convolution-integral BH is essential in practical applications of D/C-type discrete-time control, but the dual-kernel, counterflow nature of the matric convolution integral BH complicates the application of traditional numerical methods for evaluating convolution integrals. In this paper, symbolic software (MAPLE) is used to develop the exact, closed-form, explicit analytical expressions for the matric convolution-integral BH(T) for a family of simple, time- invariant, low-order examples. Those explicit, closed-form analytical results provide much needed "truth-models" against which numerical-evaluations of BH , using various alternative numerical-integration schemes, can be confidently compared.
Keywords :
MIMO systems; continuous systems; convolution; discrete time systems; matrix algebra; MIMO discrete-time control; closed-form expressions; continuous control theory; convolution matrix; discrete control theory; discrete time control; discrete-time state-model; dual-kernel matric convolution integral; exact expressions; exact state-model; explicit expressions; independent kernels; matrix convolution integral; numerical evaluation; traditional state-model; Application software; Automatic control; Closed-form solution; Control theory; Convolution; Kernel; MIMO; Discrete-Time Control; Discrete/Continuous (D/C) Control; Matric Convolution Integral Dual-Kernel;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
System Theory, 2009. SSST 2009. 41st Southeastern Symposium on
Conference_Location :
Tullahoma, TN
ISSN :
0094-2898
Print_ISBN :
978-1-4244-3324-7
Electronic_ISBN :
0094-2898
Type :
conf
DOI :
10.1109/SSST.2009.4806813
Filename :
4806813
Link To Document :
بازگشت