Market Mechanism-Based User-in-the-Loop Scalable Power Oversubscription for HPC Systems
Md Rajib Hossen, Kishwar Ahmed, Mohammad A. Islam
摘要
Significant power consumption is one of the major challenges for current and future high-performance computing (HPC) systems. All the while, HPC systems generally remain power underutilized, making them a great candidate for applying power oversubscription to reclaim unused capacity. However, an oversubscribed HPC system may occasionally get overloaded. In this paper, we propose MPR (Market-based Power Reduction), a scalable market-based approach where users actively participate in reducing the HPC system’s power consumption to mitigate overloads. In MPR, HPC users bid to supply, in exchange for incentives, the resource reduction required for handling the overloads. Using several real-world trace-based simulations, we extensively evaluate MPR and show that, by participating in MPR, users always receive more rewards than the cost of performance loss. At the same time, the HPC manager enjoys orders of magnitude more resource gain than her incentive payoff to the users. We also demonstrate the real-world effectiveness of MPR on a prototype system.
问问这篇 Paper
问问你的智能体。
Lune 读过与它相关的顶会 Paper,每个回答都会注明依据哪几篇。
相关 Paper
- Toward Sustainable HPC: In-Production Deployment of Incentive-Based Power Efficiency Mechanism on the Fugaku SupercomputerAna Luisa Veroneze Solórzano, Kento Sato, Keiji Yamamoto, Fumiyoshi Shoji 等SC 2024 · 被引用 16 次
- Prediction-Based Power Oversubscription in Cloud PlatformsAlok Gautam Kumbhare, Reza Azimi, Ioannis Manousakis, Anand Bonde 等USENIX ATC 2021 · 被引用 90 次
- Data Center Power Oversubscription with a Medium Voltage Power Plane and Priority-Aware CappingVarun Sakalkar, Vasileios Kontorinis, David Landhuis, Shaohong Li 等ASPLOS 2020 · 被引用 56 次
- Thunderbolt: Throughput-Optimized, Quality-of-Service-Aware Power Capping at ScaleShaohong Li, Xi Wang, Xiao Zhang, Vasileios Kontorinis 等OSDI 2020 · 被引用 42 次
- PASS: A Power Adaptive Storage ServerDedong Xie, Theano Stavrinos, Jonggyu Park, Simon Peter 等EuroSys 2026
