Opportunistic CPU Sharing in Mobile Edge Computing Deploying the Cloud-RAN

被引:1
|
作者
Ocampo, Andres F. [1 ,2 ]
Fida, Mah-Rukh [3 ]
Botero, Juan F. [4 ]
Elmokashfi, Ahmed [5 ]
Bryhni, Haakon [1 ]
机构
[1] Simula Metropolitan Ctr Digital Engn, Ctr Resilient Networks & Applicat, N-0167 Oslo, Norway
[2] Oslo Metropolitan Univ, N-0176 Oslo, Norway
[3] Univ Gloucestershir, Sch Comp & Engn, Cheltenham GL50 2RH, Glos, England
[4] Univ Antiouqia, Dept Elect & Telecommun Engn, Medellin, Colombia
[5] Amazon Web Serv, Seattle, WA USA
关键词
Containers; Servers; Cloud computing; Virtualization; Resource management; Kernel; Linux; Cloud-RAN; mobile edge computing; containers; resource management; RESOURCE-MANAGEMENT; ALGORITHMS; 5G;
D O I
10.1109/TNSM.2023.3304067
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
Leveraging virtualization technology, Cloud-RAN deploys multiple virtual Base Band Units (vBBUs) along with collocated applications on the same Mobile Edge Computing (MEC) server. However, the performance of real-time (RT) applications such as the vBBU could potentially be impacted by sharing computing resources with collocated workloads. To address this challenge, this paper presents a dynamic CPU sharing mechanism, specifically designed for containerized virtualization in MEC servers, that hosts both RT and non-RT general-purpose applications. Initially, the CPU sharing problem in MEC servers is formulated as a Mixed-Integer Programming (MIP). Then, we present an algorithmic solution that breaks down the MIP into simpler subproblems that are then solved using efficient, constant factor heuristics. We assessed the performance of this mechanism against instances of a commercial solver. Further, via a small-scale testbed, we assessed various CPU sharing mechanisms and their effectiveness in reducing the impact of CPU sharing on RT application processing performance. Our findings indicate that our CPU sharing mechanism reduces the worst-case execution time by more than 150% compared to the default host RT-Kernel approach. This evidence is strengthened when evaluating this mechanism within Cloud-RAN, in which vBBUs share resources with collocated applications on a MEC server. Using our CPU sharing approach, the vBBU's scheduling latency decreases by up to 21% in comparison with the host RT-Kernel.
引用
收藏
页码:2201 / 2217
页数:17
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