Title :
Power Consumption and Computation Models of Virtual Machines to Perform Computation Type Application Processes
Author :
Enokido, Tomoya ; Takizawa, Makoto
Author_Institution :
Rissho Univ., Tokyo, Japan
Abstract :
Scalable and fault-tolerant information systems like cloud systems are realized in server cluster systems. Server cluster systems are equipped with virtual machines to provide applications with scalable and fault-tolerant services. Scalable and fault-tolerant application services can be provided by balancing processing load among virtual machines to perform application processes. On the other hand, a large amount of electric energy is consumed in a server cluster system since multiple virtual machines are performed on multiple servers which consume electric energy to perform application processes. In order to design and implement an energy-aware server cluster system, the computation model and power consumption model of a server to perform application processes on multiple virtual machines have to be defined. In this paper, we first define the computation model of a virtual machine to perform application processes. We also define the power consumption model of a server to perform application processes on virtual machines.
Keywords :
fault tolerant computing; power aware computing; power consumption; resource allocation; virtual machines; cloud systems; computation model; computation type application processes; electric energy consumption; energy-aware server cluster system; fault-tolerant application services; fault-tolerant information systems; green IT; load balancing processing; power consumption model; scalable application services; scalable information systems; virtual machines; Computational modeling; Instruction sets; Power demand; Servers; Subspace constraints; Time factors; Virtual machining; Energy-aware systems; Green IT; Migration; Power consumption models; Virtual machines;
Conference_Titel :
Complex, Intelligent, and Software Intensive Systems (CISIS), 2015 Ninth International Conference on
Conference_Location :
Blumenau
Print_ISBN :
978-1-4799-8869-3
DOI :
10.1109/CISIS.2015.18