In this paper, a single-server queue with negative customers is considered. The arrival of a negative customer will remove one positive customer that is being served, if any is present. An alternative approach will be introduced to derive a set of equations which will be solved to obtain the stationary queue length distribution. We assume that the service time distribution tends to a constant asymptotic rate when time t goes to infinity. This assumption will allow for finding the stationary queue length of queueing systems with non-exponential service time distributions. Numerical examples for gamma distributed service time with fractional value of shape parameter will be presented in which the steady-state distribution of queue length with...
In the manuscript, a probability distribution of the queue length is studied in a model with group M...
We investigate the transient and stationary queue-length distributions of a class of service systems...
Abstract The stationary distribution of the number of customers in the infinite-server system with n...
In this paper, a single-server queue with negative customers is considered. The arrival of a negativ...
In this paper, a single-server queue with negative customers is considered. The arrival of a negativ...
In this paper, a single-server queue with negative customers is considered. The arrival of a negativ...
A single-server queueing system with negative customers is considered in this paper. One positive cu...
A single-server queueing system with negative customers is considered in this paper. One positive cu...
A single-server queueing system with negative customers is considered in this paper. One positive cu...
A single-server queueing system with negative customers is considered in this paper. One positive cu...
A single-server queueing system with negative customers is considered in this paper. One positive c...
Consider the single server queue in which the system capacity is infinite and the customers are ser...
Consider the single server queue in which the system capacity is infinite and the customers are serv...
We investigate the transient and stationary queue length distributions of a class of service systems...
We investigate the transient and stationary queue length distributions of a class of service systems...
In the manuscript, a probability distribution of the queue length is studied in a model with group M...
We investigate the transient and stationary queue-length distributions of a class of service systems...
Abstract The stationary distribution of the number of customers in the infinite-server system with n...
In this paper, a single-server queue with negative customers is considered. The arrival of a negativ...
In this paper, a single-server queue with negative customers is considered. The arrival of a negativ...
In this paper, a single-server queue with negative customers is considered. The arrival of a negativ...
A single-server queueing system with negative customers is considered in this paper. One positive cu...
A single-server queueing system with negative customers is considered in this paper. One positive cu...
A single-server queueing system with negative customers is considered in this paper. One positive cu...
A single-server queueing system with negative customers is considered in this paper. One positive cu...
A single-server queueing system with negative customers is considered in this paper. One positive c...
Consider the single server queue in which the system capacity is infinite and the customers are ser...
Consider the single server queue in which the system capacity is infinite and the customers are serv...
We investigate the transient and stationary queue length distributions of a class of service systems...
We investigate the transient and stationary queue length distributions of a class of service systems...
In the manuscript, a probability distribution of the queue length is studied in a model with group M...
We investigate the transient and stationary queue-length distributions of a class of service systems...
Abstract The stationary distribution of the number of customers in the infinite-server system with n...