Optimal Admission Control Mechanism Design for Time-Sensitive Services in Edge Computing
Shutong Chen, Lin Wang, Fangming Liu
Abstract
Edge computing is a promising solution for reducing service latency by provisioning time-sensitive services directly from the network edge. However, upon workload peaks at the resource-limited edge, an edge service has to queue service requests, incurring high waiting time. Such quality of service (QoS) degradation ruins the reputation and reduces the long-term revenue of the service provider.To address this issue, we propose an admission control mechanism for time-sensitive edge services. Specifically, we allow the service provider to offer admission advice to arriving requests regarding whether to join for service or balk to seek alternatives. Our goal is twofold: maximizing revenue of the service provider and ensuring QoS if the provided admission advice is followed. To this end, we propose a threshold structure that estimates the highest length of the request queue. Leveraging such a threshold structure, we propose O2A, a mechanism to balance the trade-off between increasing revenue from accepting more requests and guaranteeing QoS by advising requests to balk. Rigorous analysis shows that O2A achieves the goal and that the provided admission advice is optimal for end-users to follow. We further validate O2A through trace-driven simulations with both synthetic and real-world service request traces.
Ask about this paper
Your agent reads all of it.
Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.
Builds on3
- Protean: VM Allocation Service at ScaleOri Hadary, Luke Marshall, Ishai Menache, Abhisek Pan et al.OSDI 2020 · 189 citations
- Latency-aware VNF Chain Deployment with Efficient Resource Reuse at Network EdgePanpan Jin, Xincai Fei, Qixia Zhang, Fangming Liu et al.INFOCOM 2020 · 167 citations
- Let's Share VMs: Optimal Placement and Pricing across Base Stations in MEC SystemsMarie Siew, Kun Guo, Desmond W. H. Cai, Lingxiang Li et al.INFOCOM 2021 · 24 citations
Related papers
- INVAR: Inversion Aware Resource Provisioning and Workload Scheduling for Edge ComputingBin Wang, David Irwin, Prashant J. Shenoy, Don TowsleyINFOCOM 2024 · 11 citations
- Dynamic Edge-centric Resource Provisioning for Online and Offline Services Co-locationTao Ouyang, Kongyange Zhao, Xiaoxi Zhang, Zhi Zhou et al.INFOCOM 2023 · 18 citations
- Collaborate or Separate? Distributed Service Caching in Mobile Edge CloudsZichuan Xu, Lizhen Zhou, Sid Chi-Kin Chau, Weifa Liang et al.INFOCOM 2020 · 96 citations
- Marginal Value-Based Edge Resource Pricing and Allocation for Deadline-Sensitive TasksPuwei Wang, Zhouxing Sun, Ying Zhan, Haoran Li et al.INFOCOM 2023 · 8 citations
- The hidden cost of the edge: a performance comparison of edge and cloud latenciesAhmed Ali-Eldin, Bin Wang, Prashant J. ShenoySC 2021 · 51 citations
