TY - JOUR
T1 - Representation and analysis of behavior for multiprocess systems by using stochastic Petri nets
AU - Jin, Q.
AU - Sugasawa, Y.
PY - 1995
Y1 - 1995
N2 - This paper proposes a new approach to visually represent the behavior of multiprocess in a computer network system using stochastic Petri net (SPN) and an aggregate approach of SPN and Markov renewal process (MRP) to conduct behavior analysis and performance evaluation for the system. SPN is employed because of its highly visual nature that can give insight into the nature of the modeled system and because of its expressive power for an exponentially distributed event. In order to increase the analytical power of the SPN model, MRP is introduced and an embedded transference probability matrix is applied to obtain the steady-state solution of the model, from which it is possible to obtain automatically the performance measures of the multiprocess computer network system.
AB - This paper proposes a new approach to visually represent the behavior of multiprocess in a computer network system using stochastic Petri net (SPN) and an aggregate approach of SPN and Markov renewal process (MRP) to conduct behavior analysis and performance evaluation for the system. SPN is employed because of its highly visual nature that can give insight into the nature of the modeled system and because of its expressive power for an exponentially distributed event. In order to increase the analytical power of the SPN model, MRP is introduced and an embedded transference probability matrix is applied to obtain the steady-state solution of the model, from which it is possible to obtain automatically the performance measures of the multiprocess computer network system.
KW - Availability
KW - Behavior analysis
KW - Multiprocess systems
KW - Performance evaluation
KW - Stochastic Petri nets
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U2 - 10.1016/0895-7177(95)00187-7
DO - 10.1016/0895-7177(95)00187-7
M3 - Article
AN - SCOPUS:29144519434
SN - 0895-7177
VL - 22
SP - 109
EP - 118
JO - Mathematical and Computer Modelling
JF - Mathematical and Computer Modelling
IS - 10-12
ER -