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Dynamic Programming-Driven Multi-Stage Decision-Making Model for Zero-Carbon Data Centers
DOI:10.1002/itl2.70191.png)
Abstract
En 中文
Achieving lower carbon emission is important for data centers, and the Channeling Computing Resources from the East to the West (CCREW) project is proposed in China to develop zero-carbon data centers, but the temporal dependency of renewable energy sources (RES) supply and demand remains a challenge. A multi-stage decision-making model based on dynamic programming is proposed in this paper to forecast available time windows of RES and schedule delay-tolerant tasks to time windows. Simulation shows the decision-making model can achieve a 94.83% task completion rate and 62.43% RES utilization.
Keywords:
data centers
dynamic programming
multi-stage decision-making
RES
Journal
I
IF:
0.5
Papers:
179
Citations:
423
Organization
Cited Papers
The “Eastern Data and Western Computing” Initiative in China Contributes to Its Net-Zero Target
Engineering
IF11.6
Advancing Renewable Energy Forecasting: A Comprehensive Review of Renewable Energy Forecasting Methods
Energies
IF0
The Impact of the Carbon Emission Trading Shadow Price on the Green Total Factor Productivity of the Power Industry in China
SUSTAINABILITY
IF3.3

