We consider a discrete time single-line queueing system with independent geometric streams of regular and negative claims, infinite buffer, and geometric service. A negative claim pushes a regular claim out of the buffer queue and moves it to a bunker of infinite capacity. If the buffer is empty, a negative claim leaves the system without any effect. After servicing a claim, the system receives the next claim from the buffer, if it is not empty, or from the bunker. We obtain relations that allow computing stationary distributions for queues in the buffer and the bunker. © 2009 Pleiades Publishing, Ltd
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A single-server queueing system with negative customers is considered in this paper. One positive cu...
We consider a discrete time single-line queueing system with independent geometric streams of regula...
A discrete time single-line queueing system with independent geometric streams of regular and negati...
Consideration is given to queueing system with Poisson flows of ordinary and negative customers. O...
Consideration was given to the queuing system with Poisson flows of incoming positive and negative c...
We study the behavior of a discrete-time queueing system in the presence of disasters. Upon occurren...
We consider a discrete-time Geo=G=1=1 system in which a customer that finishes its fi rst essential...
In this work we look at a discrete-time multiserver queueing system where the number of available se...
Negative arrivals are used as a control mechanism in many telecommunication and computer networks. T...
Queueing models with disasters can be used to evaluate the impact of a breakdown or a system reset i...
A single server queueing system with two customers flows, separated buffers of limited capacities, a...
We consider a discrete-time queueing model whereby the service capacity of the system, i.e., the num...
A single-server queueing system with negative customers is considered in this paper. One positive cu...