Implementation of Frequency Drift for Identification of Solar Radio Burst Type II

Sun is constantly produced mass and radiation during its natural activities, which will interact with ionosphere and affect the earth weather. In radio astronomer community, CALLISTO is used to capture the radio signal comes from solar activities such as solar burst. Solar flares and Coronal Mass Ej...

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Main Authors: Roslan, Umar, Nur Zulaikha, Mohd Afandi, Zamri, Zainal Abidin
Format: Article
Language:English
English
Published: 2016
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Online Access:http://eprints.unisza.edu.my/7593/1/FH02-ESERI-16-06916.pdf
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Institution: Universiti Sultan Zainal Abidin
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spelling my-unisza-ir.75932022-09-13T04:00:02Z http://eprints.unisza.edu.my/7593/ Implementation of Frequency Drift for Identification of Solar Radio Burst Type II Roslan, Umar Nur Zulaikha, Mohd Afandi Zamri, Zainal Abidin QC Physics Sun is constantly produced mass and radiation during its natural activities, which will interact with ionosphere and affect the earth weather. In radio astronomer community, CALLISTO is used to capture the radio signal comes from solar activities such as solar burst. Solar flares and Coronal Mass Ejections (CMEs) were closely associated with the production of solar radio burst Type II and III. However, the determination of solar burst existence is done manually using spectrograph which appears for every 15 minutes. In order to assist the solar radio researcher to speed up the process of solar burst identification and detection, this work presents a new algorithm to auto classify solar radio burst Type II and III. The value of frequency drift was used as the main idea in this auto classify algorithm because it can easily implemented using MATLAB. There are three main steps involved named as pre-processing, identification and classification. Auto calculation of frequency drift burst on spectra was obtained from two parts which are frequency axis (df) and time axis (dt). The results of the frequency drift implementation in classification algorithm show that the algorithm developed gave almost similar determination as in manual detection. However, there are always have rooms for improvement for better detection system in future which may include specific characterization of bursts and improved noise elimination. 2016 Article PeerReviewed text en http://eprints.unisza.edu.my/7593/1/FH02-ESERI-16-06916.pdf image en http://eprints.unisza.edu.my/7593/2/FH02-ESERI-16-07419.jpg Roslan, Umar and Nur Zulaikha, Mohd Afandi and Zamri, Zainal Abidin (2016) Implementation of Frequency Drift for Identification of Solar Radio Burst Type II. International Journal on Advance Science Engineering Information Technology, 6 (5). pp. 775-780. ISSN 2088-5334
institution Universiti Sultan Zainal Abidin
building UNISZA Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Sultan Zainal Abidin
content_source UNISZA Institutional Repository
url_provider https://eprints.unisza.edu.my/
language English
English
topic QC Physics
spellingShingle QC Physics
Roslan, Umar
Nur Zulaikha, Mohd Afandi
Zamri, Zainal Abidin
Implementation of Frequency Drift for Identification of Solar Radio Burst Type II
description Sun is constantly produced mass and radiation during its natural activities, which will interact with ionosphere and affect the earth weather. In radio astronomer community, CALLISTO is used to capture the radio signal comes from solar activities such as solar burst. Solar flares and Coronal Mass Ejections (CMEs) were closely associated with the production of solar radio burst Type II and III. However, the determination of solar burst existence is done manually using spectrograph which appears for every 15 minutes. In order to assist the solar radio researcher to speed up the process of solar burst identification and detection, this work presents a new algorithm to auto classify solar radio burst Type II and III. The value of frequency drift was used as the main idea in this auto classify algorithm because it can easily implemented using MATLAB. There are three main steps involved named as pre-processing, identification and classification. Auto calculation of frequency drift burst on spectra was obtained from two parts which are frequency axis (df) and time axis (dt). The results of the frequency drift implementation in classification algorithm show that the algorithm developed gave almost similar determination as in manual detection. However, there are always have rooms for improvement for better detection system in future which may include specific characterization of bursts and improved noise elimination.
format Article
author Roslan, Umar
Nur Zulaikha, Mohd Afandi
Zamri, Zainal Abidin
author_facet Roslan, Umar
Nur Zulaikha, Mohd Afandi
Zamri, Zainal Abidin
author_sort Roslan, Umar
title Implementation of Frequency Drift for Identification of Solar Radio Burst Type II
title_short Implementation of Frequency Drift for Identification of Solar Radio Burst Type II
title_full Implementation of Frequency Drift for Identification of Solar Radio Burst Type II
title_fullStr Implementation of Frequency Drift for Identification of Solar Radio Burst Type II
title_full_unstemmed Implementation of Frequency Drift for Identification of Solar Radio Burst Type II
title_sort implementation of frequency drift for identification of solar radio burst type ii
publishDate 2016
url http://eprints.unisza.edu.my/7593/1/FH02-ESERI-16-06916.pdf
http://eprints.unisza.edu.my/7593/2/FH02-ESERI-16-07419.jpg
http://eprints.unisza.edu.my/7593/
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