联营
灵活性(工程)
计算机科学
工作量
服务(商务)
服务水平
服务体系
分布式计算
随机建模
服务提供商
服务水平目标
服务器
运筹学
计算机网络
航程(航空)
系统设计
钥匙(锁)
随机规划
响应时间
产能规划
作者
Yanting Chen,Jingui Xie,Nan Yang,Zhe George Zhang,Taozeng Zhu
标识
DOI:10.1177/10591478261417819
摘要
Resource pooling is often introduced in service systems to cope with the variability in customer demand. The primary motivation behind creating a more flexible system is to utilize resources efficiently—namely, assigning customers whose dedicated resources are fully occupied to available non-dedicated resources (referred to as off-service placement). In such a setup, the service system manager expects to serve more customers within a fixed timeframe. However, recent empirical evidence shows that, due to limited server capability, the service time at non-dedicated providers can be significantly longer than that at dedicated ones. In this study, we develop a two-server stochastic model to examine how server capability levels and other factors—such as overall workload and demand asymmetry—affect pooling configurations. We derive conditions that specify the optimal system flexibility configuration across these parameters. Our findings reveal that a partially flexible system can outperform a fully flexible one, particularly in asymmetric scenarios with low server capability. This advantage is also pronounced when considering a range of system costs, including server capability, cross-serving, and other related costs in stochastic service systems with and without buffers. These insights from our two-server model offer guidance on designing more efficient flexibility in complex multi-class, multi-server service systems.
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