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Carbon footprint reduction in cloud computing: Best practices and emerging trends

Meesam RazaSakila KSK S SreekalaA.P.D. Ali Ghabash Mohamad

Abstract

As cloud computing becomes increasingly integral to modern digital infrastructure, its environmental impact, particularly its carbon footprint, has come under scrutiny. This review paper explores best practices and emerging trends aimed at reducing the carbon footprint of cloud computing. The paper begins with an overview of the environmental challenges posed by the energy-intensive nature of data centres, which form the backbone of cloud services. It then delves into effective strategies for mitigating these impacts, including optimizing cooling systems, leveraging renewable energy sources, enhancing server utilization through virtualization, and implementing energy-efficient hardware and software. Furthermore, the paper examines cutting-edge developments such as artificial intelligence for energy management, edge computing, blockchain technology for energy transparency, and the design of sustainable data centres. Case studies from leading tech companies and innovative startups illustrate the practical application of these strategies. Additionally, the review addresses the challenges and barriers to adopting greener cloud practices, including technical, economic, and regulatory hurdles. The paper concludes by highlighting future directions for research and policy recommendations to support sustainable cloud computing. By adopting the discussed best practices and staying abreast of emerging trends, stakeholders can significantly reduce the environmental impact of cloud computing, contributing to broader global efforts to combat climate change.

Green IT and SustainabilityCloud computingCarbon footprintFootprintReduction (mathematics)Computer scienceCarbon fibersEnvironmental scienceData scienceGreenhouse gasGeography
Citations
6
FWCI
1.25
field-weighted impact
References
10
Percentile
79%
vs. same field & year
References
Worldwide electricity used in data centers
Environmental Research Letters · 2008 · 964 citations
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