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Modeling Methods for 3D Lightning Mapping from SpaceGlobal lightning detection has advanced greatly over the past few decades both on ground and from orbit. Ground-based systems like the Lightning Mapping Array (LMA) excel at high-precision 3D reconstruction of local flashes, while spaceborne lightning sensors have much larger potential coverage but have been limited by coarser resolution and often rely on data from other instruments to determine flash location. The primary focus of this study is to examine the level of flash detail that can be expected from one or more low-Earth orbiting small satellites that combine VHF and optical measurements of lightning, which is a new mission concept called CubeSpark. The goal of CubeSpark is to map the 3D charge structure of thunderstorms at 1-2 km spatial resolution on a global scale, enabling a host of new atmospheric and space electricity studies. In order to maximize the potential data quality and minimize potential cost, flashes were simulated beneath single- and multi-satellite configurations. In the multi-satellite approach, RF detectors on each of the six satellites would measure the arrival times of impulsive VHF sources to collectively pinpoint their locations in 3D and reconstruct flashes with higher resolution than has been achieved from space. A single-station approach for 3D observation of lightning would follow the method of determining altitudes of strong VHF sources that produce trans-ionospheric pulse pairs (TIPPs) while relying on an on-board high-resolution optical day/night lightning mapper for approximate horizontal flash locations. Here we present preliminary results comparing the expected data fidelity and accuracy between these methods to inform potential satellite missions like CubeSpark.
Document ID
20220018400
Acquisition Source
Marshall Space Flight Center
Document Type
Poster
Authors
Jackson Remington
(Oak Ridge Associated Universities Oak Ridge, Tennessee, United States)
Timothy Lang
(Marshall Space Flight Center Redstone Arsenal, Alabama, United States)
Sonja Behnke
(Los Alamos National Laboratory Los Alamos, New Mexico, United States)
Harald Edens
(Los Alamos National Laboratory Los Alamos, New Mexico, United States)
Patrick Gatlin
(Marshall Space Flight Center Redstone Arsenal, Alabama, United States)
Mason Quick
(Marshall Space Flight Center Redstone Arsenal, Alabama, United States)
Sarah Stough
(University of Alabama in Huntsville Huntsville, Alabama, United States)
Date Acquired
December 5, 2022
Subject Category
Meteorology and Climatology
Report/Patent Number
20220011177
Meeting Information
Meeting: AGU Fall Meeting
Location: Chicago, IL
Country: US
Start Date: December 12, 2022
End Date: December 16, 2022
Sponsors: American Geophysical Union
Funding Number(s)
CONTRACT_GRANT: 80HQTR21CA005
WBS: 478643.02.13.04.01
Distribution Limits
Public
Copyright
Use by or on behalf of the US Gov. Permitted.
Keywords
lightning
mapping
3D
cubespark
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