DocumentCode
230537
Title
4M-Switch: Multi-mode-multi-model supervisory control framework for performance differentiation in virtual machine environments
Author
Patikirikorala, Tharindu ; Colman, Alan ; Jun Han
Author_Institution
Swinburne Univ. of Technol., Melbourne, VIC, Australia
fYear
2014
fDate
17-21 Nov. 2014
Firstpage
145
Lastpage
153
Abstract
When resources are shared in a virtual machine environment, providing different performance levels to different customer applications is a challenging task. In order to sustain stability, the control solution not only has to take into account the time-based dynamics, but also has to adapt to various operating modes. This paper proposes the 4M-Switch supervisory control system design framework, which takes into account the possible operating modes and dimension changes of the VM environment at design time and then adapts the control solution to achieve required management goals when changes occur at runtime. 4M-Switch utilizes a piece-wise linear modeling approach to present the behavior of the system using multiple models and simple switching logic to change the controller parameters to mitigate the effects of nonlinearities. The experiment results conducted under a range of conditions show that 4M-Switch approach effectively adapts the control solution and provides significantly more stable performance differentiation compared to the existing approaches.
Keywords
piecewise linear techniques; software performance evaluation; supervisory programs; virtual machines; 4M-Switch supervisory control system design framework; VM environment; multimode-multimodel supervisory control framework; nonlinear effects mitigation; performance differentiation; piece-wise linear modeling; switching logic; virtual machine; Closed loop systems; Conferences; Decision support systems; Generators; Hybrid power systems; PD control; Silicon;
fLanguage
English
Publisher
ieee
Conference_Titel
Network and Service Management (CNSM), 2014 10th International Conference on
Conference_Location
Rio de Janeiro
Type
conf
DOI
10.1109/CNSM.2014.7014151
Filename
7014151
Link To Document