Approximate analysis of open networks of queues with blocking: Tandem configurations
IEEE Transactions on Software Engineering
Approximate analysis of product-form type queueing networks with blocking and deadlock
Performance Evaluation
Product Form Approximations for Queueing Networks with Multiple Servers and Blocking
IEEE Transactions on Computers
Open, Closed, and Mixed Networks of Queues with Different Classes of Customers
Journal of the ACM (JACM)
Mean-Value Analysis of Closed Multichain Queuing Networks
Journal of the ACM (JACM)
The Distribution of Queuing Network States at Input and Output Instants
Journal of the ACM (JACM)
A comparison of numerical techniques in Markov modeling
Communications of the ACM
On the Exact and Approximate Throughput Analysis of Closed Queuing Networks with Blocking
IEEE Transactions on Software Engineering
Some Extensions to Multiclass Queueing Network Analysis
Proceedings of the Third International Symposium on Modelling and Performance Evaluation of Computer Systems: Performance of Computer Systems
Matrix-Geometric Solution for Finite Capacity Queues with Phase-Type Distributions
Performance '87 Proceedings of the 12th IFIP WG 7.3 International Symposium on Computer Performance Modelling, Measurement and Evaluation
Queueing networks with blocking: a bibliography
ACM SIGMETRICS Performance Evaluation Review
Product Form Approximations for Queueing Networks with Multiple Servers and Blocking
IEEE Transactions on Computers
Approximate Throughput Analysis of Cyclic Queueing Networks with Finite Buffers
IEEE Transactions on Software Engineering
Survey of closed queueing networks with blocking
ACM Computing Surveys (CSUR)
On the Exact and Approximate Throughput Analysis of Closed Queuing Networks with Blocking
IEEE Transactions on Software Engineering
A low power approach to system level pipelined interconnect design
Proceedings of the 2004 international workshop on System level interconnect prediction
An Interconnect Channel Design Methodology for High Performance Integrated Circuits
Proceedings of the conference on Design, automation and test in Europe - Volume 2
A power aware system level interconnect design methodology for latency-insensitive systems
Proceedings of the 2004 IEEE/ACM International conference on Computer-aided design
A customer threshold property for closed finite queueing networks
Performance Evaluation
Approximate queueing network analysis of patient treatment times
Proceedings of the 2nd international conference on Performance evaluation methodologies and tools
Higher-order distributional properties in closed queueing networks
Performance Evaluation
Semi-Markov-Based Approach for the Analysis of Open Tandem Networks with Blocking and Truncation
International Journal of Applied Mathematics and Computer Science
The qnetworks toolbox: a software package for queueing networks analysis
ASMTA'10 Proceedings of the 17th international conference on Analytical and stochastic modeling techniques and applications
Queueing networks with blocking: analysis, solution algorithms and properties
Network performance engineering
A network evaluation for LAN, MAN and WAN grid environments
EUC'05 Proceedings of the 2005 international conference on Embedded and Ubiquitous Computing
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Mean value analysis is an exact solution technique for infinite capacity queueing networks and enjoyed widespread popularity during recent years.It considers the behavior of the system by stepwise increasing the number of jobs in the entire network, thus it is well suited for the analysis of queueing networks with blocking.In this work, an approximation is introduced for the mean value analysis queueing networks with transfer blocking.The blocking occurs when a job, after service at a station, wants to join a station which is full.The job resides in the server of the source station until a place becomes available in the destination station.The approximation is based on the modification of mean residence times due to the blocking events that occur in the network.Several examples are executed in order to validate the approximate results.