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Estimating Resource Needs for Time-Constrained Workflows.

, , , , , and . eScience, page 31-38. IEEE Computer Society, (2008)

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Automating Climate Science: Large Ensemble Simulations on the TeraGrid with the GriPhyN Virtual Data System., , , , , , , , and . e-Science, page 32. IEEE Computer Society, (2006)Pegasus and DAGMan From Concept to Execution: Mapping Scientific Workflows onto Today's Cyberinfrastructure., , , , , , , and . High Performance Computing Workshop, volume 16 of Advances in Parallel Computing, page 56-74. IOS Press, (2006)Performance Prediction-based versus Load-based Site Selection: Quantifying the Difference., , , , , , and . ISCA PDCS, page 148-153. ISCA, (2005)Parameterized specification, configuration and execution of data-intensive scientific workflows., , , , , , , , , and 2 other author(s). Cluster Computing, 13 (3): 315-333 (2010)The Pegasus portal: web based grid computing., , , , , , , , , and 2 other author(s). SAC, page 680-686. ACM, (2005)Accelerating Circuit Realization via a Collaborative Gateway of Innovations., , , , , , , and . IWSG, volume 2363 of CEUR Workshop Proceedings, CEUR-WS.org, (2017)Integrating existing scientific workflow systems: the Kepler/Pegasus example., , , , and . WORKS@HPDC, page 21-28. ACM, (2007)rvGAHP: push-based job submission using reverse SSH connections., , , , , and . WORKS@SC, page 3:1-3:8. ACM, (2017)Community Resources for Enabling Research in Distributed Scientific Workflows., , , , and . eScience, page 177-184. IEEE Computer Society, (2014)Task scheduling strategies for workflow-based applications in grids., , , , , , and . CCGRID, page 759-767. IEEE Computer Society, (2005)