Published April 25, 2020 | Version Published
Journal Article

Spatial analysis and visualization of global data on multi-resolution hexagonal grids

  • 1. ROR icon Jet Propulsion Lab
  • 2. ROR icon University of Wollongong
  • 3. ROR icon University of Cincinnati
  • 4. Department of Global Ecology, Carnegie Institution for Science, Stanford, CA, USA
  • 5. ROR icon Southern Oregon University

Abstract

In this article, computation for the purpose of spatial visualization is presented in the context of understanding the variability in global environmental processes. Here, we generate synthetic but realistic global data sets and input them into computational algorithms that have a visualization capability; we call this a simulation–visualization system. Visualization is key here, because the algorithms which we are evaluating must respect the spatial structure of the input. We modify, augment, and integrate four existing component technologies: statistical conditional simulation, Discrete Global Grids (DGGs), Array Set Addressing, and a visualization platform for displaying our results on a globe. The internal representation of the data to be visualized is built around the need for efficient storage and computation as well as the need to move up and downresolutions in a mutually consistent way. In effect, we have constructed a Geographic Information System that is based on a DGG and has desirable data storage, computation, and visualization capabilities. We provide an example of how our simulation–visualization system may be used, by evaluating a computational algorithm called Spatial Statistical Data Fusion that was developed for use on big, remote-sensing data sets.

Additional details

Identifiers

Funding

NASA Earth Science
AIST-11-0018
Australian Research Council Discovery Project
DP190100180
Simons Foundation
317298

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