Automated ionospheric scattering layer hypothesis generation for detected and classified auroral global positioning system scintillation events

V Sreenivash, Y Su, S Datta-Barua - Radio Science, 2020 - ieeexplore.ieee.org
We describe a method to detect and classify global positioning system (GPS) scintillation,
and then hypothesize a possible ionospheric layer scattering the signal. The objective is to …

Ionospheric irregularity layer height and thickness estimation with a GNSS receiver array

S Datta-Barua, Y Su, AL Rubio… - IEEE Transactions on …, 2020 - ieeexplore.ieee.org
This work develops a method by which a kilometer-spaced array of Global Navigation
Satellite System (GNSS) scintillation receivers can be used to estimate the ionospheric …

Auroral E and F Layer Ionospheric Irregularities Sensed by a Kilometer-Spaced GNSS Receiver Array

S Datta-Barua, V Sreenivash, KB Deshpande… - Proceedings of the 31st …, 2018 - ion.org
This paper surveys GPS L1 and L2C scintillations automatically detected, classified, and
attributed to a scattering layer from data collected in 2014-2015 by the Scintillation Auroral …

Identifying E and F Region Irregularities with a Scintillation Auroral GPS Array

V Sreenivash, Y Su, D Hampton… - 2018 2nd URSI …, 2018 - ieeexplore.ieee.org
While Global Navigation Satellite System (GNSS) receivers have been used in arrays
spanning the auroral zone for more than a decade, more recently kilometer and sub …

Auroral Ionospheric Irregularity Properties via Estimation and Inverse Modeling of GNSS Scintillations

S Datta-Barua, KB Deshpande… - 2019 URSI Asia …, 2019 - ieeexplore.ieee.org
When Global Navigation Satellite System (GNSS) signals traverse the ionosphere,
variations in plasma density cause the received signal at the ground to scintillate, ie, exhibit …