Advanced SuperDARN meteor wind observations based on raw time series analysis technique
The meteor observation technique based on SuperDARN raw time series analysis has been upgraded. This technique extracts meteor information as biproducts and does not degrade the quality of normal SuperDARN operations. In the upgrade the radar operating system (RADOPS) has been modified so that it ca...
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ftleicesterunfig:oai:figshare.com:article/10118258 2023-05-15T16:51:09+02:00 Advanced SuperDARN meteor wind observations based on raw time series analysis technique M. Tsutsumi A. S. Yukimatu D. A. Holdsworth Mark Lester 2009-03-20T00:00:00Z https://figshare.com/articles/journal_contribution/Advanced_SuperDARN_meteor_wind_observations_based_on_raw_time_series_analysis_technique/10118258 unknown 2381/25199 https://figshare.com/articles/journal_contribution/Advanced_SuperDARN_meteor_wind_observations_based_on_raw_time_series_analysis_technique/10118258 All Rights Reserved Uncategorized Science & Technology Physical Sciences Technology Astronomy & Astrophysics Geochemistry & Geophysics Meteorology & Atmospheric Sciences Remote Sensing Telecommunications HF RADARS INTERFEROMETRY BACKSCATTER DYNAMICS CUTLASS REGION ECHOES Text Journal contribution 2009 ftleicesterunfig 2021-11-11T20:04:14Z The meteor observation technique based on SuperDARN raw time series analysis has been upgraded. This technique extracts meteor information as biproducts and does not degrade the quality of normal SuperDARN operations. In the upgrade the radar operating system (RADOPS) has been modified so that it can oversample every 15 km during the normal operations, which have a range resolution of 45 km. As an alternative method for better range determination a frequency domain interferometry (FDI) capability was also coded in RADOPS, where the operating radio frequency can be changed every pulse sequence. Test observations were conducted using the CUTLASS Iceland East and Finland radars, where oversampling and FDI operation (two frequencies separated by 3 kHz) were simultaneously carried out. Meteor ranges obtained in both ranging techniques agreed very well. The ranges were then combined with the interferometer data to estimate meteor echo reflection heights. Although there were still some ambiguities in the arrival angles of echoes because of the rather long antenna spacing of the interferometers, the heights and arrival angles of most of meteor echoes were more accurately determined than previously. Wind velocities were successfully estimated over the height range of 84 to 110 km. The FDI technique developed here can be further applied to the common SuperDARN operation, and study of fine horizontal structures of F region plasma irregularities is expected in the future. Other Non-Article Part of Journal/Newspaper Iceland University of Leicester: Figshare |
institution |
Open Polar |
collection |
University of Leicester: Figshare |
op_collection_id |
ftleicesterunfig |
language |
unknown |
topic |
Uncategorized Science & Technology Physical Sciences Technology Astronomy & Astrophysics Geochemistry & Geophysics Meteorology & Atmospheric Sciences Remote Sensing Telecommunications HF RADARS INTERFEROMETRY BACKSCATTER DYNAMICS CUTLASS REGION ECHOES |
spellingShingle |
Uncategorized Science & Technology Physical Sciences Technology Astronomy & Astrophysics Geochemistry & Geophysics Meteorology & Atmospheric Sciences Remote Sensing Telecommunications HF RADARS INTERFEROMETRY BACKSCATTER DYNAMICS CUTLASS REGION ECHOES M. Tsutsumi A. S. Yukimatu D. A. Holdsworth Mark Lester Advanced SuperDARN meteor wind observations based on raw time series analysis technique |
topic_facet |
Uncategorized Science & Technology Physical Sciences Technology Astronomy & Astrophysics Geochemistry & Geophysics Meteorology & Atmospheric Sciences Remote Sensing Telecommunications HF RADARS INTERFEROMETRY BACKSCATTER DYNAMICS CUTLASS REGION ECHOES |
description |
The meteor observation technique based on SuperDARN raw time series analysis has been upgraded. This technique extracts meteor information as biproducts and does not degrade the quality of normal SuperDARN operations. In the upgrade the radar operating system (RADOPS) has been modified so that it can oversample every 15 km during the normal operations, which have a range resolution of 45 km. As an alternative method for better range determination a frequency domain interferometry (FDI) capability was also coded in RADOPS, where the operating radio frequency can be changed every pulse sequence. Test observations were conducted using the CUTLASS Iceland East and Finland radars, where oversampling and FDI operation (two frequencies separated by 3 kHz) were simultaneously carried out. Meteor ranges obtained in both ranging techniques agreed very well. The ranges were then combined with the interferometer data to estimate meteor echo reflection heights. Although there were still some ambiguities in the arrival angles of echoes because of the rather long antenna spacing of the interferometers, the heights and arrival angles of most of meteor echoes were more accurately determined than previously. Wind velocities were successfully estimated over the height range of 84 to 110 km. The FDI technique developed here can be further applied to the common SuperDARN operation, and study of fine horizontal structures of F region plasma irregularities is expected in the future. |
format |
Other Non-Article Part of Journal/Newspaper |
author |
M. Tsutsumi A. S. Yukimatu D. A. Holdsworth Mark Lester |
author_facet |
M. Tsutsumi A. S. Yukimatu D. A. Holdsworth Mark Lester |
author_sort |
M. Tsutsumi |
title |
Advanced SuperDARN meteor wind observations based on raw time series analysis technique |
title_short |
Advanced SuperDARN meteor wind observations based on raw time series analysis technique |
title_full |
Advanced SuperDARN meteor wind observations based on raw time series analysis technique |
title_fullStr |
Advanced SuperDARN meteor wind observations based on raw time series analysis technique |
title_full_unstemmed |
Advanced SuperDARN meteor wind observations based on raw time series analysis technique |
title_sort |
advanced superdarn meteor wind observations based on raw time series analysis technique |
publishDate |
2009 |
url |
https://figshare.com/articles/journal_contribution/Advanced_SuperDARN_meteor_wind_observations_based_on_raw_time_series_analysis_technique/10118258 |
genre |
Iceland |
genre_facet |
Iceland |
op_relation |
2381/25199 https://figshare.com/articles/journal_contribution/Advanced_SuperDARN_meteor_wind_observations_based_on_raw_time_series_analysis_technique/10118258 |
op_rights |
All Rights Reserved |
_version_ |
1766041265976115200 |