DocumentCode
1780454
Title
CLBC - Cost effective load balanced resource allocation for partitioned cloud system
Author
Sumalatha, M.R. ; Selvakumar, C. ; Priya, Tanu ; Azariah, R. Titus ; Manohar, P. Murali
Author_Institution
Dept. of Inf. Technol., Anna Univ., Chennai, India
fYear
2014
fDate
10-12 April 2014
Firstpage
1
Lastpage
5
Abstract
In cloud computing, remote based massive data storage and dynamic computation services are provided to the users. The cloud enables the user to complete their tasks using pay-as-you-go cost model which typically works on the incurred virtual machine hours, so reducing the execution time will minimize the computational cost. Therefore the scheduler should bring maximum throughput in order to achieve effective resource allocation in cloud. Hence, in this work, DBPS (Deadline Based Pre-emptive Scheduling) and a TLBC (Throttled Load Balancing for Cloud) load balancing model based on cloud partitioning using virtual machine has been proposed. Workload prediction is done using statistics and training set, so that error tolerance can be achieved in TLBC. The preliminary results obtained when measuring performance based on the computational cost of the task set and the number of tasks executed in a particular time shows the proposed TLBC outperforms compared with existing systems. OpenNebula has been used as the cloud management tool for doing real time analysis and improving performance.
Keywords
cloud computing; computational complexity; resource allocation; scheduling; statistics; virtual machines; CLBC; DBPS; OpenNebula; TLBC load balancing model; cloud computing; cloud management tool; cloud partitioning; computational cost; cost effective load balanced resource allocation for partitioned cloud system; deadline based pre-emptive scheduling; error tolerance; statistics; throttled load balancing for cloud; virtual machine; workload prediction; Cloud computing; Computational efficiency; Computational modeling; Load management; Partitioning algorithms; Resource management; Virtual machining; Cloud Computing; Computational cost; OpenNebula; Pay-as-you-go model; Prediction;
fLanguage
English
Publisher
ieee
Conference_Titel
Recent Trends in Information Technology (ICRTIT), 2014 International Conference on
Conference_Location
Chennai
Type
conf
DOI
10.1109/ICRTIT.2014.6996174
Filename
6996174
Link To Document