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VESTEC: Visual Exploration and Sampling Toolkit for Extreme Computing

delete2023-01-01
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OA
AI
M
Markus Flatken
A
Artur Podobas *
R
Riccardo Fellegara *
A
Achim Basermann
J
Johannes Holke
D
David Knapp
M
Max Kontak
C
Christian Krullikowski
M
Michael Nolde
N
Nick Brown
R
Rupert W. Nash
G
Gordon Gibb
E
Evgenij Belikov
S
Steven W. D. Chien
S
Stefano Markidis
P
P J Guillou
J
Julien Tierny
J
Jules Vidal
C
Charles Gueunet
J
Johannes Günther
M
Miroslaw Pawlowski
P
Piero Poletti
G
Giorgio Guzzetta
M
Mattia Manica
A
Agnese Zardini
J
Jean‐Pierre Chaboureau
M
Miguel Mendes
A
Adrián Cardíl
S
Santiago Monedero
J
Joaquín Ramirez
A
Andreas Gerndt
DOI:10.1109/ACCESS.2023.3301177delete
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Abstract

Abstract

En 中文
Natural disasters and epidemics are unfortunate recurring events that lead to huge societal and economic loss. Recent advances in supercomputing can facilitate simulations of such scenarios in (or even ahead of) real-time, therefore supporting the design of adequate responses by public authorities. By incorporating high-velocity data from sensors and modern high-performance computing systems, ensembles of simulations and advanced analysis enable urgent decision-makers to better monitor the disaster and to employ necessary actions (e.g., to evacuate populated areas) for mitigating these events. Unfortunately, frameworks to support such versatile and complex workflows for urgent decision-making are only rarely available and often lack in functionalities. This paper gives an overview of the VESTEC project and framework, which unifies orchestration, simulation, in-situ data analysis, and visualization of natural disasters that can be driven by external sensor data or interactive intervention by the user. We show how different components interact and work together in VESTEC and describe implementation details. To disseminate our experience three different types of disasters are evaluated: a Wildfire in La Jonquera (Spain), a Mosquito-Borne disease in two regions of Italy, and the magnetic reconnection in the Earth magnetosphere.
Keywords:
Scientific visualization
high-performance computing
topological data analysis
in-situ processing
interactive data processing
ensemble simulation
decision making

Journal

IEEE Access cover
IEEE Access
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3.6
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29.4W

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TELECOM SudParis
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kitware, inc.
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german aerospace centre (dlr)
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Royal Institute of Technology
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imt - institut mines-telecom
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institut polytechnique de paris
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University of Edinburgh
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