DocumentCode
133465
Title
A scalability hierarchical fault tolerance strategy: Community Fault Tolerance
Author
Jianping Chen ; Yao Lu ; Comsa, Ioan ; Kuonen, Pierre
Author_Institution
Inst. of Inf., Neuchatel Univ., Neuchatel, Switzerland
fYear
2014
fDate
12-13 Sept. 2014
Firstpage
212
Lastpage
217
Abstract
Most of hierarchical fault tolerance strategies did not pay much attention to scalability of fault tolerance. In distributed system, scalability is a very important feature. To tolerant failures when the scale of the system changing is a normal and important scenario. Especially in nowadays, almost all the cloud computing companies provide their computing services elastically. To add extra devices or remove devices in order to provide different services happens all the time. In such a scenario, it is very important that the fault tolerance strategy is scalable. In this paper, we introduce dynamic programming thoughts to build hierarchical regions as communities for fault tolerance strategy and apply different strategies based on communities instead of a single process. We call this fault tolerance strategy as Community Fault Tolerance. It cannot only reduce the memory overload by eliminating the number of records of messages inside the community region, but also provides a good characteristic of scalability. The scalability property of our strategy makes it handle with the scenario of adding devices or removing devices in the distributed system easily.
Keywords
cloud computing; dynamic programming; fault tolerant computing; cloud computing; community fault tolerance; distributed system; dynamic programming; memory overload reduction; scalability hierarchical fault tolerance strategy; Checkpointing; Communities; Dynamic programming; Fault tolerance; Fault tolerant systems; Parallel processing; Scalability; distributed system; dynamic programming; hierarchical fault tolerance; scalability;
fLanguage
English
Publisher
ieee
Conference_Titel
Automation and Computing (ICAC), 2014 20th International Conference on
Conference_Location
Cranfield
Type
conf
DOI
10.1109/IConAC.2014.6935488
Filename
6935488
Link To Document