We consider the joint operation of two multi-server queueing systems. Both systems provide the same type of service and compete for customers. It is assumed that the first system is controlled by ourselves while the second one is controlled by our competitor. The arriving customers are shared between the systems depending on the comparative rating of our system. The stationary behavior of the considered model under the fixed parameters of both systems and the fixed mechanism of calculation of the rating is described by a continuous-time multi-dimensional Markov chain. The stationary distribution of this Markov chain is computed. Expressions for the key performance measures of the systems are derived. Obtained results provide an opportunity ...
The multi-server queueing system with a finite of an infinite buffer, with semi-Markovian input flo...
Queueing systems with processor sharing represent the adequate models for sharing the resources, e.g...
Mélange et al. (2016) investigated a continuous-time queueing system with two types of customers eac...
The queueing systems with the competition between servers or the customers are widely used in modern...
A multi-server infinite buffer queueing system with additional servers (assistants) providing help t...
We study a multi-server queueing model in which arrivals occur according to a Markovian arrival proc...
The study of economic behavior of service providers in a competition environment is an important and...
We study a multi-server queueing model in which the arrivals occur according to a Markovian arrival ...
We analyse algorithmic the queueing system with two parallel queues supplied with two heterogeneous ...
We consider a multiserver queueing system with two input flows. Type-1 customers have preemptive pri...
We consider a multi-server queueing system in which two types of customers arrive according to a Mar...
The paper studies a controllable multi-server heterogeneous queueing system where servers operate at...
We consider a multi-server queueing model in which arrivals occur according to a Markovian arrival p...
We consider discouraged arrival of Markovian queueing systems whose service speed is regulated accor...
Abstract In this paper, we consider a polling system consisting of two-parallel queues and a single ...
The multi-server queueing system with a finite of an infinite buffer, with semi-Markovian input flo...
Queueing systems with processor sharing represent the adequate models for sharing the resources, e.g...
Mélange et al. (2016) investigated a continuous-time queueing system with two types of customers eac...
The queueing systems with the competition between servers or the customers are widely used in modern...
A multi-server infinite buffer queueing system with additional servers (assistants) providing help t...
We study a multi-server queueing model in which arrivals occur according to a Markovian arrival proc...
The study of economic behavior of service providers in a competition environment is an important and...
We study a multi-server queueing model in which the arrivals occur according to a Markovian arrival ...
We analyse algorithmic the queueing system with two parallel queues supplied with two heterogeneous ...
We consider a multiserver queueing system with two input flows. Type-1 customers have preemptive pri...
We consider a multi-server queueing system in which two types of customers arrive according to a Mar...
The paper studies a controllable multi-server heterogeneous queueing system where servers operate at...
We consider a multi-server queueing model in which arrivals occur according to a Markovian arrival p...
We consider discouraged arrival of Markovian queueing systems whose service speed is regulated accor...
Abstract In this paper, we consider a polling system consisting of two-parallel queues and a single ...
The multi-server queueing system with a finite of an infinite buffer, with semi-Markovian input flo...
Queueing systems with processor sharing represent the adequate models for sharing the resources, e.g...
Mélange et al. (2016) investigated a continuous-time queueing system with two types of customers eac...