Lune

EuroSys2026顶会

Carbon-Aware Continuous Learning for Sustainable Real-Time Machine Learning Analytics

Gwanjong Park, Osama Khan, Dongho Ha, Myeongjae Jeon, Euiseong Seo

2026年份
1被引次数

摘要

Real-time machine learning (ML) analytics models deployed on edge servers often experience degraded inference accuracy due to data drift. Continuous learning mitigates this by periodically retraining models using newly collected data. However, retraining incurs significant computational overhead, increasing energy consumption and carbon footprint several-fold. Existing approaches for reducing carbon footprint predominantly focus on general workload scheduling strategies, such as shifting jobs to periods or regions with lower carbon intensity. However, they neglect continuous-learning-specific parameters like data labeling model, retraining threshold, and retraining hyperparameters. Consequently, these approaches miss opportunities to further reduce the carbon footprint and enhance inference accuracy in continuous learning systems under dynamic data drift. In this paper, we propose a novel Carbon-footprint-aware Continuous Learning (CCL) scheme that minimizes carbon emissions during model retraining without sacrificing inference accuracy. Distinct from prior workload scheduling approaches, CCL adaptively adjusts labeling model, retraining threshold, and retraining hyperparameters based on predictive models that estimate data drift severity and carbon intensity dynamics. Our adaptive real-time optimization approach consistently achieves a near-optimal balance between accuracy and carbon footprint under dynamic conditions. Experimental results demonstrate that CCL reduces operational carbon footprint by up to 68.5% compared to state-of-the-art carbon-agnostic methods, with negligible accuracy degradation.

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。

可以从这些问题问起

智能体调用

Lunesearch_papers

在 Lune 里问

免费开始,无需绑卡

lune papers get 9b136b43-7568-4862-bf17-86446b30711d

相关 Paper

黄昏的海面,两侧是细线勾勒的悬崖