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A survey and taxonomy on energy efficient resource allocation techniques for cloud computing systems

journal contribution
posted on 2024-11-01, 22:32 authored by Abdul Hameed, Alireza Khoshkbarforoushha, Rajiv Ranjan, Prem Prakash Jayaraman, Joanna Kolodziej, Pavan Balaji, Sherali Zeadally, Qutaibah Malluhi, Nikos Tziritas, Vishnu Abhinav, Samee Khan, Albert Zomaya
In a cloud computing paradigm, energy efficient allocation of different virtualized ICT resources (servers, storage disks, and networks, and the like) is a complex problem due to the presence of heterogeneous application (e.g., content delivery networks, MapReduce, web applications, and the like) workloads having contentious allocation requirements in terms of ICT resource capacities (e.g., network bandwidth, processing speed, response time, etc.). Several recent papers have tried to address the issue of improving energy efficiency in allocating cloud resources to applications with varying degree of success. However, to the best of our knowledge there is no published literature on this subject that clearly articulates the research problem and provides research taxonomy for succinct classification of existing techniques. Hence, the main aim of this paper is to identify open challenges associated with energy efficient resource allocation. In this regard, the study, first, outlines the problem and existing hardware and software-based techniques available for this purpose. Furthermore, available techniques already presented in the literature are summarized based on the energy-efficient research dimension taxonomy. The advantages and disadvantages of the existing techniques are comprehensively analyzed against the proposed research dimension taxonomy namely: resource adaption policy, objective function, allocation method, allocation operation, and interoperability.

History

Related Materials

  1. 1.
    DOI - Is published in 10.1007/s00607-014-0407-8
  2. 2.
    ISSN - Is published in 0010485X

Journal

Computing: archives for scientific computing

Volume

98

Issue

7

Start page

751

End page

774

Total pages

24

Publisher

Springer

Place published

Austria

Language

English

Copyright

© Springer-Verlag Wien 2014

Former Identifier

2006054540

Esploro creation date

2020-06-22

Fedora creation date

2016-07-07

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