Effects of Absorption On High-latitude Meteor Scatter Communication-systems

Data acquired with the Geophysics Laboratory's high-latitude meteor scatter test-bed between Sondrestrom Air Base (AB) and Thule AB, Greenland, during the solar disturbances of March and August 1989 are presented. These disturbances provided a unique opportunity to observe a number of naturally...

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Published in:Radio Science
Main Authors: Ostergaard, JC., Weitzen, JA., Kossey, PA., Bailey, AD., Bench, PM., Li, SW., Katan, JR., Coriaty, AJ., Rasmussen, JE.
Other Authors: UCL
Format: Article in Journal/Newspaper
Language:English
Published: Amer Geophysical Union 1991
Subjects:
Online Access:http://hdl.handle.net/2078.1/50985
https://doi.org/10.1029/91RS00584
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spelling ftunistlouisbrus:oai:dial.uclouvain.be:boreal:50985 2024-05-12T08:04:40+00:00 Effects of Absorption On High-latitude Meteor Scatter Communication-systems Ostergaard, JC. Weitzen, JA. Kossey, PA. Bailey, AD. Bench, PM. Li, SW. Katan, JR. Coriaty, AJ. Rasmussen, JE. UCL 1991 http://hdl.handle.net/2078.1/50985 https://doi.org/10.1029/91RS00584 eng eng Amer Geophysical Union boreal:50985 http://hdl.handle.net/2078.1/50985 doi:10.1029/91RS00584 urn:ISSN:0048-6604 urn:EISSN:1944-799X Radio Science, Vol. 26, no. 4, p. 931-942 (1991) info:eu-repo/semantics/article 1991 ftunistlouisbrus https://doi.org/10.1029/91RS00584 2024-04-18T18:12:43Z Data acquired with the Geophysics Laboratory's high-latitude meteor scatter test-bed between Sondrestrom Air Base (AB) and Thule AB, Greenland, during the solar disturbances of March and August 1989 are presented. These disturbances provided a unique opportunity to observe a number of naturally occurring disturbance effects on meteor scatter links operated in the frequency range (35 to 147 MHz) covered by the test-bed. The disturbances range from signal absorption to system noise variations. The properties of ionospheric absorption in general are discussed and illustrated with computations using electron density profiles from the September 1978 solar proton event (SPE). It has been found that accurate measurements of high levels of ionospheric absorption with riometers pose special problems. These problems are identified and discussed. The data acquired during the March and August 1989 solar disturbances are then related to the zenith absorption measured at Thule, and the influence of absorption as well as system noise variations are discussed. The two events presented are very different. The August event was dominated by ionospheric absorption which affected meteor arrival rates and duty cycles primarily at the lower frequencies (35 and 45 MHz), although some effects could also be seen at the higher frequencies (65 to 147 MHz). The March event combined weak ionospheric absorption with large solar noise bursts. The effects of this event on the test-bed were dominated by increased solar noise at all frequencies. The relative influence of solar noise and ionospheric absorption during SPE events is discussed along with speculation as to the validity of frequency dependence conclusions based on testing of the JANET system. Article in Journal/Newspaper Greenland Thule DIAL@USL-B (Université Saint-Louis, Bruxelles) Greenland Radio Science 26 4 931 942
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language English
description Data acquired with the Geophysics Laboratory's high-latitude meteor scatter test-bed between Sondrestrom Air Base (AB) and Thule AB, Greenland, during the solar disturbances of March and August 1989 are presented. These disturbances provided a unique opportunity to observe a number of naturally occurring disturbance effects on meteor scatter links operated in the frequency range (35 to 147 MHz) covered by the test-bed. The disturbances range from signal absorption to system noise variations. The properties of ionospheric absorption in general are discussed and illustrated with computations using electron density profiles from the September 1978 solar proton event (SPE). It has been found that accurate measurements of high levels of ionospheric absorption with riometers pose special problems. These problems are identified and discussed. The data acquired during the March and August 1989 solar disturbances are then related to the zenith absorption measured at Thule, and the influence of absorption as well as system noise variations are discussed. The two events presented are very different. The August event was dominated by ionospheric absorption which affected meteor arrival rates and duty cycles primarily at the lower frequencies (35 and 45 MHz), although some effects could also be seen at the higher frequencies (65 to 147 MHz). The March event combined weak ionospheric absorption with large solar noise bursts. The effects of this event on the test-bed were dominated by increased solar noise at all frequencies. The relative influence of solar noise and ionospheric absorption during SPE events is discussed along with speculation as to the validity of frequency dependence conclusions based on testing of the JANET system.
author2 UCL
format Article in Journal/Newspaper
author Ostergaard, JC.
Weitzen, JA.
Kossey, PA.
Bailey, AD.
Bench, PM.
Li, SW.
Katan, JR.
Coriaty, AJ.
Rasmussen, JE.
spellingShingle Ostergaard, JC.
Weitzen, JA.
Kossey, PA.
Bailey, AD.
Bench, PM.
Li, SW.
Katan, JR.
Coriaty, AJ.
Rasmussen, JE.
Effects of Absorption On High-latitude Meteor Scatter Communication-systems
author_facet Ostergaard, JC.
Weitzen, JA.
Kossey, PA.
Bailey, AD.
Bench, PM.
Li, SW.
Katan, JR.
Coriaty, AJ.
Rasmussen, JE.
author_sort Ostergaard, JC.
title Effects of Absorption On High-latitude Meteor Scatter Communication-systems
title_short Effects of Absorption On High-latitude Meteor Scatter Communication-systems
title_full Effects of Absorption On High-latitude Meteor Scatter Communication-systems
title_fullStr Effects of Absorption On High-latitude Meteor Scatter Communication-systems
title_full_unstemmed Effects of Absorption On High-latitude Meteor Scatter Communication-systems
title_sort effects of absorption on high-latitude meteor scatter communication-systems
publisher Amer Geophysical Union
publishDate 1991
url http://hdl.handle.net/2078.1/50985
https://doi.org/10.1029/91RS00584
geographic Greenland
geographic_facet Greenland
genre Greenland
Thule
genre_facet Greenland
Thule
op_source Radio Science, Vol. 26, no. 4, p. 931-942 (1991)
op_relation boreal:50985
http://hdl.handle.net/2078.1/50985
doi:10.1029/91RS00584
urn:ISSN:0048-6604
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op_doi https://doi.org/10.1029/91RS00584
container_title Radio Science
container_volume 26
container_issue 4
container_start_page 931
op_container_end_page 942
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