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Approximation analysis of multi-class closed queueing maintenance networks with a parts inventory system and two-phase Coxian time distributions
Affiliation:1. Universidade Federal Fluminense, Brazil;2. Departamento de Computação, R. Recife s/n, Jardim Bela Vista, Rio das Ostras-RJ, Brazil;3. Departamento de Ciência de Computação, Av. Gal. Milton Tavares de Souza, s/n, Sao Domingos, Niterói-RJ, Brazil
Abstract:We consider a maintenance network where a set of bases is supported by a replacement parts inventory system and a centrally located repair depot. The ordering policy for the parts is the (S, Q) inventory policy. We extended the previous results to the network, where processing times at each node follow a two-phase Coxian distribution. The proposed network was modeled as a multi-class closed queueing network with a synchronization station. To make the analysis of the network computationally tractable, we developed a two-phase approximation method. In the first phase of the method, the proposed network was analyzed with the previous algorithm based on a product-form approximation. In the second phase, a sub-network was again analyzed with the procedure of a product-form approximation method such that the state space of the sub-network was reduced. In the analysis of a sub-network, a recursive method was also used to solve balance equations by exploiting the special structure of the Markov chain. The new algorithm provided a good estimation of the performance measures of interest. In addition to being accurate, the new algorithm is simple and converges rapidly.
Keywords:Spares provisioning problem  Multi-class closed queueing network  Product-form approximation method  Recursive technique  Performance analysis
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