Energy Conservation Using Dynamic Voltage Frequency Scaling for Computational Cloud

Author:

Florence A. Paulin12,Shanthi V.3,Simon C. B. Sunil4

Affiliation:

1. Sathyabama University, Chennai 600 119, India

2. St. Joseph’s Institute of Technology, Chennai 600 119, India

3. St. Joseph’s College of Engineering, Chennai 600 119, India

4. Zoho Corporation, Chennai, India

Abstract

Cloud computing is a new technology which supports resource sharing on a “Pay as you go” basis around the world. It provides various services such as SaaS, IaaS, and PaaS. Computation is a part of IaaS and the entire computational requests are to be served efficiently with optimal power utilization in the cloud. Recently, various algorithms are developed to reduce power consumption and even Dynamic Voltage and Frequency Scaling (DVFS) scheme is also used in this perspective. In this paper we have devised methodology which analyzes the behavior of the given cloud request and identifies the associated type of algorithm. Once the type of algorithm is identified, using their asymptotic notations, its time complexity is calculated. Using best fit strategy the appropriate host is identified and the incoming job is allocated to the victimized host. Using the measured time complexity the required clock frequency of the host is measured. According to that CPU frequency is scaled up or down using DVFS scheme, enabling energy to be saved up to 55% of total Watts consumption.

Publisher

Hindawi Limited

Subject

General Environmental Science,General Biochemistry, Genetics and Molecular Biology,General Medicine

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1. Future Trends and Significant Solutions for Intelligent Computing Resource Management;Advances in Computational Intelligence and Robotics;2024-02-27

2. Machine Learning for Load Forecasting in a Green Data Center;2022 4th International Conference on Sustainable Technologies for Industry 4.0 (STI);2022-12-17

3. Optimizing Energy Efficiency of Node.js Applications with CPU DVFS Awareness;2022 IEEE 13th International Green and Sustainable Computing Conference (IGSC);2022-10-24

4. A Queue Waiting Cost-Aware Control Model for Large Scale Heterogeneous Cloud Datacenter;IEEE Transactions on Cloud Computing;2020

5. Frequency Selection Approach for Energy Aware Cloud Database;IEEE Access;2019

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