具有自适应服务速率的排队系统中负载与过劳效应的建模

Modeling Load and Overwork Effects in Queueing Systems with Adaptive Service Rates

Operations Research · 2016
被引 45
FT 50UTD 24ABS 4★

中文导读

研究了服务速率随系统负载和过劳状态自适应变化的排队模型,提出了高效算法计算性能指标,并证明忽略自适应行为会导致人员配置决策不稳定或次优。

Abstract

Servers in many real queueing systems do not work at a constant speed. They adapt to the system state by speeding up when the system is highly loaded or slowing down when load has been high for an extended time period. Their speed can also be constrained by other factors, such as geography or a downstream blockage. We develop a state-dependent queueing model in which the service rate depends on the system “load” and “overwork.” Overwork refers to a situation where the system has been under a heavy load for an extended time period. We quantify load as the number of users in the system, and we operationalize overwork with a state variable that is incremented with each service completion in a high-load period and decremented at a rate that is proportional to the number of idle servers during low-load periods. Our model is a quasi-birth-and-death process with a special structure that we exploit to develop efficient and easy-to-implement algorithms to compute system performance measures. We use the analytical model and simulation to demonstrate how using models that ignore adaptive server behavior can result in inconsistencies between planned and realized performance and can lead to suboptimal, unstable, or oscillatory staffing decisions.

排队论运营管理服务系统计算机科学