DocumentCode
3538649
Title
Model Based Byzantine Fault Detection Technique for Cloud Computing
Author
Guisheng Fan ; Huiqun Yu ; Liqiong Chen ; Dongmei Liu
Author_Institution
Dept. of Comput. Sci. & Eng., East China Univ. of Sci. & Technol., Shanghai, China
fYear
2012
fDate
6-8 Dec. 2012
Firstpage
249
Lastpage
256
Abstract
Cloud computing has attracted much interest recently from both industry and academic. More and more Internet applications are moving to the cloud environment. However, fault detection technique in cloud application is a crucial issue. This issue is especially difficult since cloud computing relies by nature on a highly dynamic environment. In this paper, we propose a model based Byzantine fault detection technique for cloud computing. A cloud computing fault net (CFN) is used to precisely model the different components of cloud computing, such as service resources, cloud module, the detection and failure process, etc, the basic properties of the constructed model are analyzed. Based on this, the fault detection strategy is proposed, which can dynamically detect the fault of cloud application in the execution process. The operational semantics and related theories of Petri nets help prove its effectiveness and correctness. An example is used to simulate the modeling and analyzing process, and a series of experiments are done to explain the effectiveness of proposed method.
Keywords
Petri nets; cloud computing; fault tolerant computing; CFN; Internet application; Petri nets; cloud application; cloud computing fault net; cloud environment; cloud module component; fault detection strategy; model based Byzantine fault detection technique; service resource component; Analytical models; Cloud computing; Computational modeling; Computer architecture; Fault detection; Reliability; Semantics; Byzantine; Cloud computing; Petri nets; fault detection; reliability;
fLanguage
English
Publisher
ieee
Conference_Titel
Services Computing Conference (APSCC), 2012 IEEE Asia-Pacific
Conference_Location
Guilin
Print_ISBN
978-1-4673-4825-6
Type
conf
DOI
10.1109/APSCC.2012.56
Filename
6478223
Link To Document