DocumentCode
170278
Title
Layer Decomposition: An Effective Structure-Based Approach for Scientific Workflow Similarity
Author
Starlinger, J. ; Cohen-Boulakia, S. ; Khanna, S. ; Davidson, S.B. ; Leser, U.
Author_Institution
Inst. fur Inf., Humboldt Univ. zu Berlin, Berlin, Germany
Volume
1
fYear
2014
fDate
20-24 Oct. 2014
Firstpage
169
Lastpage
176
Abstract
Scientific workflows have become a valuable tool for large-scale data processing and analysis. This has led to the creation of specialized online repositories to facilitate workflow sharing and reuse. Over time, these repositories have grown to sizes that call for advanced methods to support workflow discovery, in particular for effective similarity search. Here, we present a novel and intuitive workflow similarity measure that is based on layer decomposition. Layer decomposition accounts for the directed dataflow underlying scientific workflows, a property which has not been adequately considered in previous methods. We comparatively evaluate our algorithm using a gold standard for 24 query workflows from a repository of almost 1500 scientific workflows, and show that it a) delivers the best results for similarity search, b) has a much lower runtime than other, often highly complex competitors in structure-aware workflow comparison, and c) can be stacked easily with even faster, structure-agnostic approaches to further reduce runtime while retaining result quality.
Keywords
data analysis; query processing; scientific information systems; workflow management software; directed dataflow; large-scale data analysis; large-scale data processing; layer decomposition; online repositories; scientific workflow similarity; structure-agnostic approaches; structure-aware workflow comparison; structure-based approach; workflow discovery; workflow reuse; workflow sharing; Correlation; Data processing; Gold; Phase locked loops; Runtime; Semantics; Standards;
fLanguage
English
Publisher
ieee
Conference_Titel
e-Science (e-Science), 2014 IEEE 10th International Conference on
Conference_Location
Sao Paulo
Print_ISBN
978-1-4799-4288-6
Type
conf
DOI
10.1109/eScience.2014.19
Filename
6972262
Link To Document