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EESaver: Saving Energy Dynamically for Green Multi-Access Edge Computing

delete2023-07-01
delete3
PRE
AI
G
Guangming Cui
Q
Qiang He *
X
Xiaoyu Xia
F
Feifei Chen
Y
Yun Yang
DOI:10.1109/TPDS.2023.3277619delete
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摘要

摘要

En 中文
With the rollout of the 5G network around the globe, a massive number of edge servers have been deployed to host online applications demanding low service latency for users. These edge servers constitute multi-access edge computing (MEC) systems. Running 24/7, edge servers consume tremendous energy and take up a great part of global carbon emissions. The edge energy-saving (EES) problem is needed to facilitate energy-efficient edge resource provisions. Unfortunately, existing energy-saving approaches designed for data centers are becoming impractical. First, edge servers are used to provide services to a specific geographical area. Its energy utilization is impacted by the temporal distribution of users within its coverage. Second, a user could be accommodated by any of its neighbor edge servers. Third, it is possible to activate and deactivate individual physical machines that facilitate an edge server as needed. Thus, EES is designed to save the system energy of physical machines in a long term by serving the users over time. EES problem has been formulated systematically and its problem hardness has been analyzed theoretically, then we propose EESaver (Edge Energy Saver) for formulating EES strategies dynamically over time to facilitate green MEC. EESaver's superior performance is tested comprehensively.
Keyword:
Servers
Energy consumption
Data centers
Cloud computing
Multi-access edge computing
Demand response
5G mobile communication
Energy-saving
online approach
green multi-access edge computing

期刊

IEEE Transactions on Parallel and Distributed Systems 封面图
IEEE Transactions on Parallel and Distributed Systems
IF:
6
论文数:
5.2K
被引数:
1.1W

机构

S
Swinburne University of Technology
学者数:
9.3K
论文数: 1.2W
被引数: 2.0W
D
Deakin University
学者数:
2.0W
论文数: 2.1W
被引数: 2.8W
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