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The stability analysis of stochastic models for telecommunication
systems is an intensively studied topic. The analysis is, as a
rule, a difficult problem requiring a refined mathematical
technique, especially when one endeavors beyond the framework of
Markovian models. The primary purpose of this book is to present,
in a unified way, research into the stability analysis of a wide
variety of regenerative queueing systems. It describes the
theoretical foundations of this method, and then shows how it works
with particular models, both classic ones as well as more recent
models that have received attention. The focus lies on an in-depth
and insightful mathematical explanation of the regenerative
stability analysis method. The unique volume can serve as a
textbook for students working in these and related scientific
areas. The material is also of interest to engineers working in
telecommunications field, who may be faced with the problem of
stability of queueing systems.
The stability analysis of stochastic models for telecommunication
systems is an intensively studied topic. The analysis is, as a
rule, a difficult problem requiring a refined mathematical
technique, especially when one endeavors beyond the framework of
Markovian models. The primary purpose of this book is to present,
in a unified way, research into the stability analysis of a wide
variety of regenerative queueing systems. It describes the
theoretical foundations of this method, and then shows how it works
with particular models, both classic ones as well as more recent
models that have received attention. The focus lies on an in-depth
and insightful mathematical explanation of the regenerative
stability analysis method. The unique volume can serve as a
textbook for students working in these and related scientific
areas. The material is also of interest to engineers working in
telecommunications field, who may be faced with the problem of
stability of queueing systems.
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