Effects of rain on scintillation measured on Ku-Band Satellite Signals in tropical region

Analysis of the tropospheric scintillation from earth to space at Ku-band has been carried out in order to obtain the required cut off frequency for the scintillation. This paper presents a comparison of scintillation amplitude and scintillation intensity between rain and non-rain event using data...

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Main Authors: Nadirah , Abdul Rahim, Islam, Md. Rafiqul, J.S, Mandeep, Hassan , Dao
Format: Proceeding Paper
Language:English
Published: 2012
Subjects:
Online Access:http://irep.iium.edu.my/32244/1/ISAP2012_Nagoya_Japan.pdf
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author Nadirah , Abdul Rahim
Islam, Md. Rafiqul
J.S, Mandeep
Hassan , Dao
author_facet Nadirah , Abdul Rahim
Islam, Md. Rafiqul
J.S, Mandeep
Hassan , Dao
author_sort Nadirah , Abdul Rahim
collection IIUM
description Analysis of the tropospheric scintillation from earth to space at Ku-band has been carried out in order to obtain the required cut off frequency for the scintillation. This paper presents a comparison of scintillation amplitude and scintillation intensity between rain and non-rain event using data measured in Kuala Lumpur in December 2011. The findings denote that the signal level of scintillation during rain is higher than during non-rain event. The findings also demonstrate that as the elevation angle is higher, the path length will be smaller. Therefore, the scintillation amplitude will be small.
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spelling oai:generic.eprints.org:322442016-05-11T08:47:15Z http://irep.iium.edu.my/32244/ Effects of rain on scintillation measured on Ku-Band Satellite Signals in tropical region Nadirah , Abdul Rahim Islam, Md. Rafiqul J.S, Mandeep Hassan , Dao TK5101 Telecommunication. Including telegraphy, radio, radar, television Analysis of the tropospheric scintillation from earth to space at Ku-band has been carried out in order to obtain the required cut off frequency for the scintillation. This paper presents a comparison of scintillation amplitude and scintillation intensity between rain and non-rain event using data measured in Kuala Lumpur in December 2011. The findings denote that the signal level of scintillation during rain is higher than during non-rain event. The findings also demonstrate that as the elevation angle is higher, the path length will be smaller. Therefore, the scintillation amplitude will be small. 2012-10-29 Proceeding Paper PeerReviewed application/pdf en http://irep.iium.edu.my/32244/1/ISAP2012_Nagoya_Japan.pdf Nadirah , Abdul Rahim and Islam, Md. Rafiqul and J.S, Mandeep and Hassan , Dao (2012) Effects of rain on scintillation measured on Ku-Band Satellite Signals in tropical region. In: ISAP2012 International Symposium, 29 Oct - 2 Nov 2012, Nagoya, Japan. http://www.isap2012.net
spellingShingle TK5101 Telecommunication. Including telegraphy, radio, radar, television
Nadirah , Abdul Rahim
Islam, Md. Rafiqul
J.S, Mandeep
Hassan , Dao
Effects of rain on scintillation measured on Ku-Band Satellite Signals in tropical region
title Effects of rain on scintillation measured on Ku-Band Satellite Signals in tropical region
title_full Effects of rain on scintillation measured on Ku-Band Satellite Signals in tropical region
title_fullStr Effects of rain on scintillation measured on Ku-Band Satellite Signals in tropical region
title_full_unstemmed Effects of rain on scintillation measured on Ku-Band Satellite Signals in tropical region
title_short Effects of rain on scintillation measured on Ku-Band Satellite Signals in tropical region
title_sort effects of rain on scintillation measured on ku band satellite signals in tropical region
topic TK5101 Telecommunication. Including telegraphy, radio, radar, television
url http://irep.iium.edu.my/32244/1/ISAP2012_Nagoya_Japan.pdf
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AT jsmandeep effectsofrainonscintillationmeasuredonkubandsatellitesignalsintropicalregion
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