Title :
A virtualization based elastic model for high performance computing clusters in a Networked Control System
Author :
Xu Lijun ; Fei Minrui ; Yu Wei ; Song Yang ; Du Dajun
Author_Institution :
Shanghai Key Lab. of Power Station Autom. Technol., Shanghai Univ., Shanghai, China
Abstract :
This paper investigates a flexible elastic computing scheme for a class of two-layered Networked Control Systems (NCSs). A high performance cluster architecture with virtual properties that hide the complexity of distributed physical infrastructures is presented. The architecture is support for cloud computing to dynamically deliver heterogeneous computational environments and partition the cluster capacity, adapting to variable demands in a networked control system. Also, a performance model employing cloud resources for elastic clusters is developed, which plans the capacity of the cluster to meet a performance policy (e.g. deadline) or cost request to complete a given work load. The performance of model has been evaluated in the execution of heuristic computing workloads. Finally, the comparison experimental results have demonstrated that the virtualization based elastic clusters constitute a feasible and high performing computing platform for a networked control system.
Keywords :
cloud computing; control engineering computing; networked control systems; virtualisation; workstation clusters; cloud computing; distributed physical infrastructure; flexible elastic computing scheme; heterogeneous computational environment; high performance cluster architecture; high performance computing clusters; two-layered networked control systems; virtual properties; virtualization based elastic clusters; virtualization based elastic model; Benchmark testing; Cloud computing; Computational modeling; Computer architecture; Networked control systems; Servers; Time factors; Cloud Computing; Elasticity; Networked Control System; Virtual Cluster;
Conference_Titel :
Control Conference (CCC), 2011 30th Chinese
Conference_Location :
Yantai
Print_ISBN :
978-1-4577-0677-6
Electronic_ISBN :
1934-1768