A solar-wind-driven empirical model of Pc3 wave activity at a mid-latitude location

In this paper we describe the development of two empirical models of Pc3 wave activity observed at a ground station. The models are tasked to predict pulsation intensity at Tihany, Hungary, from the OMNI solar wind data set at 5 min time resolution. One model is based on artificial neural...

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Main Authors: S. Lotz, B. Heilig, P. Sutcliffe
Format: Article
Language:English
Published: Copernicus Publications 2015-02-01
Series:Annales Geophysicae
Online Access:https://www.ann-geophys.net/33/225/2015/angeo-33-225-2015.pdf
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author S. Lotz
B. Heilig
P. Sutcliffe
author_facet S. Lotz
B. Heilig
P. Sutcliffe
author_sort S. Lotz
collection DOAJ
description In this paper we describe the development of two empirical models of Pc3 wave activity observed at a ground station. The models are tasked to predict pulsation intensity at Tihany, Hungary, from the OMNI solar wind data set at 5 min time resolution. One model is based on artificial neural networks and the other on multiple linear regression. Input parameters to the models are iteratively selected from a larger set of candidate inputs. The optimal set of inputs are solar wind speed, interplanetary magnetic field orientation (via cone angle), proton density and solar zenith angle (representing local time). Solar wind measurements are shifted in time with respect to Pc3 data to account for the propagation time of ULF perturbations from upstream of the bow shock. Both models achieve correlation of about 70% between measured and predicted Pc3 wave intensity. The timescales at which the most important solar wind parameters influence pulsation intensity are calculated for the first time. We show that solar wind speed influences pulsation intensity at much longer timescales (about 2 days) than cone angle (about 1 h).
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spelling doaj.art-c6eb0eb971c74501a658d99c77038e7b2022-12-21T17:15:15ZengCopernicus PublicationsAnnales Geophysicae0992-76891432-05762015-02-013322523410.5194/angeo-33-225-2015A solar-wind-driven empirical model of Pc3 wave activity at a mid-latitude locationS. Lotz0B. Heilig1P. Sutcliffe2SANSA Space Science, Hermanus, South AfricaGeological and Geophysical Institute of Hungary, Tihany, HungarySANSA Space Science, Hermanus, South AfricaIn this paper we describe the development of two empirical models of Pc3 wave activity observed at a ground station. The models are tasked to predict pulsation intensity at Tihany, Hungary, from the OMNI solar wind data set at 5 min time resolution. One model is based on artificial neural networks and the other on multiple linear regression. Input parameters to the models are iteratively selected from a larger set of candidate inputs. The optimal set of inputs are solar wind speed, interplanetary magnetic field orientation (via cone angle), proton density and solar zenith angle (representing local time). Solar wind measurements are shifted in time with respect to Pc3 data to account for the propagation time of ULF perturbations from upstream of the bow shock. Both models achieve correlation of about 70% between measured and predicted Pc3 wave intensity. The timescales at which the most important solar wind parameters influence pulsation intensity are calculated for the first time. We show that solar wind speed influences pulsation intensity at much longer timescales (about 2 days) than cone angle (about 1 h).https://www.ann-geophys.net/33/225/2015/angeo-33-225-2015.pdf
spellingShingle S. Lotz
B. Heilig
P. Sutcliffe
A solar-wind-driven empirical model of Pc3 wave activity at a mid-latitude location
Annales Geophysicae
title A solar-wind-driven empirical model of Pc3 wave activity at a mid-latitude location
title_full A solar-wind-driven empirical model of Pc3 wave activity at a mid-latitude location
title_fullStr A solar-wind-driven empirical model of Pc3 wave activity at a mid-latitude location
title_full_unstemmed A solar-wind-driven empirical model of Pc3 wave activity at a mid-latitude location
title_short A solar-wind-driven empirical model of Pc3 wave activity at a mid-latitude location
title_sort solar wind driven empirical model of pc3 wave activity at a mid latitude location
url https://www.ann-geophys.net/33/225/2015/angeo-33-225-2015.pdf
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