Abstract
Research in workflow management systems design references the mobile agent computing paradigm where agents have been shown to increase the total capacity of a workflow system through the decoupling of execution management from a statically designated workflow engine, although coordinating fault tolerance mechanisms has been shown to be a downside due to increased overall execution times. To address this issue, we develop a model for comparing the effects of two fault tolerance techniques: local and remote checkpointing. The model enables an examination of fault tolerance coordination impacts on execution time while concomitantly taking into account the dynamic nature of a workflow environment. A proposed use for the model includes providing for selecting and configuring agent-based fault tolerance approaches based on changes in environmental variables - an approach that allows the owners of a workflow management system to reap the scaling efficiency benefits of the mobile agent paradigm without being forced to make tradeoffs in execution performance.
| Original language | English (US) |
|---|---|
| Title of host publication | Proceedings of the Annual Hawaii International Conference on System Sciences |
| Editors | R.H. Spraque, Jr. |
| Pages | 188 |
| Number of pages | 1 |
| State | Published - 2005 |
| Event | 38th Annual Hawaii International Conference on System Sciences - Big Island, HI, United States Duration: Jan 3 2005 → Jan 6 2005 |
Other
| Other | 38th Annual Hawaii International Conference on System Sciences |
|---|---|
| Country/Territory | United States |
| City | Big Island, HI |
| Period | 1/3/05 → 1/6/05 |
ASJC Scopus subject areas
- General Engineering
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