Publications
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Jump to search filtersMIRaGE Multiscale Inverse Rapid Group-theory for Engineered-metamaterials
Abstract not provided.
Merlin Element Library Deep Dive
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Supporting High Performance Analytics with System Software for Virtualized Supercomputing
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Architectural Convergence of Big Data and Extreme-Scale Computing: Marriage of Convenience or Conviction
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Solvers for Hypersonic Flow Applications
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Some directions on algorithms for chance-constrained optimization models
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Advanced Power Measurement and Control for the Trinity Supercomputer
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Parallel Programming Futures: What We Have and Will Have Will Not Be Enough
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Calibration and Propagation of Model Discrepancy Across Experiments
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Collaborative Augmented Reality Virtual Reality (CARVR)
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Sparse multifidelity approximations for forward UQ
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Exploiting Geometric Partitioning in Task Mapping for Parallel Computes
We present a new method for mapping applications' MPI tasks to cores of a parallel computer such that applications' communication time is reduced. We address the case of sparse node allocation, where the nodes assigned to a job are not necessarily located in a contiguous block nor within close proximity to each other in the network, although our methods generalize to contiguous allocations as well. The goal is to assign tasks to cores so that interdependent tasks are performed by "nearby' cores, thus lowering the distance messages must travel, the amount of congestion in the network, and the overall cost of communication. Our new method applies a geometric partitioning algorithm to both the tasks and the processors, and assigns task parts to the corresponding processor parts. We also present a number of algorithmic optimizations that exploit specific features of the network or application. We show that, for the structured finite difference mini-application MiniGhost, our mapping methods reduced communication time up to 75% relative to MiniGhost's default mapping on 128K cores of a Cray XK7 with sparse allocation. For the atmospheric modeling code E3SM/HOMME, our methods reduced communication time up to 31% on 32K cores of an IBM BlueGene/Q with contiguous allocation.
A Few Thoughts on Characterizing Quantum Hardware
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IO Challenges for Workflows
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Creating a Meaningless Single Number to Appease Human Irrationality
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Classical Graph and Nonlocal Laplacians
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TOWARDS LEVERAGING ACTIVE DIRECTION FOR EFFICIENT MULTIFIDELITY UQ STRATEGIES
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The Crazy Future of Vis
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Warm Dense Matter: What theory is telling experiment what theory could be telling experiment and why method developers should care
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Methodologies for Enabling Bayesian Calibration in Landice Modeling Towards Probabilistic Projections of Sealevel Change
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What?s New in ParaView - DOECGF 2018
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Spiking Neural Algorithms for Markov Process Random Walk
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Multi-level Uncertainty Quantification of a Wind Turbine Large Eddy Simulation Model
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Trinity: Opportunities and Challenges of a Heterogeneous System
Abstract not provided.