Computer ScienceEnvironmental ScienceEngineering

Zhen Xiao, Weijia Song, Qi Chen

2013.6.1IEEE TRANSACTIONS ON PARALLEL AND DISTRIBUTED SYSTEMS

DOI: 10.1109/tpds.2012.283

tlooto Summary

This paper presents a system that uses virtualization technology to allocate data center resources dynamically based on application demands and support green computing by optimizing the number of servers in use and develops a set of heuristics that prevent overload in the system effectively while saving energy used.

Abstract

Cloud computing allows business customers to scale up and down their resource usage based on needs. Many of the touted gains in the cloud model come from resource multiplexing through virtualization technology. In this paper, we present a system that uses virtualization technology to allocate data center resources dynamically based on application demands and support green computing by optimizing the number of servers in use. We introduce the concept of "skewness” to measure the unevenness in the multidimensional resource utilization of a server. By minimizing skewness, we can combine different types of workloads nicely and improve the overall utilization of server resources. We develop a set of heuristics that prevent overload in the system effectively while saving energy used. Trace driven simulation and experiment results demonstrate that our algorithm achieves good performance.

Citation format

XIAO, Zhen; SONG, Weijia; CHEN, Qi. Dynamic resource allocation using virtual machines for cloud computing environment. IEEE TRANSACTIONS ON PARALLEL AND DISTRIBUTED SYSTEMS, 2013, 24: 1107–1117.