DocumentCode :
1805772
Title :
On solving stochastic coupling matrices arising in iterative aggregation/disaggregation methods
Author :
Stewart, William J. ; Touzene, A.
Author_Institution :
Dept. of Comput. Sci., North Carolina State Univ., Raleigh, NC, USA
fYear :
1994
fDate :
31 Jan-2 Feb 1994
Firstpage :
255
Lastpage :
262
Abstract :
Iterative aggregation/disaggregation (IAD) methods are powerful tools for solving Markov chain models whose transition probability matrices are nearly completely decomposable (NCD). Such models arise frequently during the performance and reliability analysis of computer and telecommunication systems. IAD methods require the solution of a stochastic coupling matrix whose elements denote transition probabilities among blocks. The coupling matrices are often large and in NCD models necessarily have diagonal elements close to one and small off-diagonal elements. This makes their solution by either iterative or direct methods rather difficult. We propose a modification of the coupling matrix that allows us to accurate and efficiently compute its stationary probability vector
Keywords :
Markov processes; iterative methods; matrix algebra; probability; IAD methods; Markov chain models; NCD models; diagonal elements; iterative aggregation/disaggregation methods; nearly completely decomposable; reliability analysis; small off-diagonal elements; stationary probability vector; stochastic coupling matrices; transition probability matrices; Computer errors; Computer science; Distributed decision making; Iterative methods; Matrix decomposition; Performance analysis; Power system modeling; Power system reliability; Stochastic processes; Telecommunication computing;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Modeling, Analysis, and Simulation of Computer and Telecommunication Systems, 1994., MASCOTS '94., Proceedings of the Second International Workshop on
Conference_Location :
Durham, NC
Print_ISBN :
0-8186-5292-6
Type :
conf
DOI :
10.1109/MASCOT.1994.284413
Filename :
284413
Link To Document :
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