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Ergodicity and truncation bounds for inhomogeneous birth and death processes with additional transitions from and to origin the class of continuous-time birth and death processes defined on non-negative integers with special

Some results for inhomogeneous birth-and-death process with application to staffing problem in telecommunication service systems-varying processes is an innhomogeneous birth-death process for which we propose some general theoretical results

Ergodicity and perturbation bounds for inhomogeneous birth and death processes with additional transitions from and to the origin, specifically, inhomogeneous birth and death processes allowing special transitions from and to the origin

TWO-SIDED TRUNCATIONS FOR THE M-t\M-t\S QUEUEING MODEL birth and death processes which is important for queueing applications. For this purpose we calculate

Two-sided truncations for the Mt|Mt|S queueing model for timeinhomogeneous birth and death processes which is important for queueing applications. For this purpose we

TRUNCATION BOUNDS FOR A CLASS OF INHOMOGENEOUS BIRTH AND DEATH QUEUEING MODELS WITH ADDITIONAL TRANSITIONSThe paper considers the computation of limiting characteristics for a class of inhomogeneous birth-death

Bounds on the rate of convergence for one class of inhomogeneous Markovian queueing models with possible batch arrivals and services of multiserver queueing systems, described by inhomogeneous Markov chains. Specifically, we consider

Bounds for markovian queues with possible catastrophesInhomogeneous birth-death processes

Modeling and analyzing licensed shared access operation for 5G network as an inhomogeneous queue with catastrophes is described by an inhomogeneous birth and death process with catastrophes and repairs. The main aim

Lower bounds for the rate of convergence for continuous-time inhomogeneous Markov chains with a finite state space birth–death–catastrophes process and for a Markov chain with large output intensity from a state. © 2018

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