排队网络中参数推断的贝叶斯方法

A Bayesian Approach to Parameter Inference in Queueing Networks

ACM Transactions on Modeling and Computer Simulation · 2016
被引 17
ABS 3

中文导读

提出一种基于吉布斯采样的方法,用于估计封闭多类排队网络中的服务需求,通过迭代近似归一化常数提高准确性,并在云应用数据中验证了有效性。

Abstract

The application of queueing network models to real-world applications often involves the task of estimating the service demand placed by requests at queueing nodes. In this article, we propose a methodology to estimate service demands in closed multiclass queueing networks based on Gibbs sampling. Our methodology requires measurements of the number of jobs at resources and can accept prior probabilities on the demands. Gibbs sampling is challenging to apply to estimation problems for queueing networks since it requires one to efficiently evaluate a likelihood function on the measured data. This likelihood function depends on the equilibrium solution of the network, which is difficult to compute in closed models due to the presence of the normalizing constant of the equilibrium state probabilities. To tackle this obstacle, we define a novel iterative approximation of the normalizing constant and show the improved accuracy of this approach, compared to existing methods, for use in conjunction with Gibbs sampling. We also demonstrate that, as a demand estimation tool, Gibbs sampling outperforms other popular Markov Chain Monte Carlo approximations. Experimental validation based on traces from a cloud application demonstrates the effectiveness of Gibbs sampling for service demand estimation in real-world studies.

排队论贝叶斯推断马尔可夫链蒙特卡洛服务需求估计云计算