Enabling Sustainable Cloud Computing With Low-Carbon Server Design
Jaylen Wang, Daniel S. Berger, Fiodar Kazhamiaka, Celine Irvene, Chaojie Zhang, Esha Choukse, Kali Frost, Rodrigo Fonseca, Brijesh Warrier, Chetan Bansal, Jonathan Stern, Ricardo Bianchini, Akshitha Sriraman · IEEE Micro · 2025
To combat climate change, we must reduce carbon emissions from hyperscale cloud computing. We find that compute servers cause the majority of a general-purpose cloud’s emissions. Thus, we motivate designing carbon-efficient compute server Stock Keeping Units (SKUs), or GreenSKUs, using recently-available low-carbon components. We build three GreenSKU prototypes, integrating energy-efficient CPUs, reused old DRAM via CXL, and reused old SSDs. We reveal challenges that limit GreenSKUs’ carbon savings at scale and may prevent their adoption by cloud providers. To address these challenges, we develop a novel framework, GSF (GreenSKU Framework), that enables cloud providers to systematically evaluate GreenSKUs’ carbon savings at scale. By implementing GSF within Microsoft Azure’s production constraints, we demonstrate that GreenSKUs reduce net cloud emissions by 8%, which is globally significant. This work is the first to demonstrate and quantify how carbon-efficient server designs translate to measurable cloud-scale emissions reductions, enabling meaningful contributions to cloud sustainability goals.