A new algorithm to estimate attenuation using frequency shift methods
This paper presents the improvement of quality factor (Q) estimation using shift frequency method. A new method was developed based on two previous methods; peak frequency shift (PFS) method and centroid frequency shift (CFS) method. The proposed algorithm has been tested to gauge its performance us...
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Universiti Kebangsaan Malaysia
2012
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my-ukm.journal.54162016-12-14T06:38:23Z http://journalarticle.ukm.my/5416/ A new algorithm to estimate attenuation using frequency shift methods Maman Hermana, Hammad Hazim Mohd Azhar, Zuhar Zahir Tuan Harith, This paper presents the improvement of quality factor (Q) estimation using shift frequency method. A new method was developed based on two previous methods; peak frequency shift (PFS) method and centroid frequency shift (CFS) method. The proposed algorithm has been tested to gauge its performance using three different scenarios; Q variation, travel time variation, and signal to noise ratio (SNR) variation. The test was performed using the Ricker wavelet with random noise included. Based on the results obtained, it can be concluded that the new proposed method was able to improve Q estimation using shift frequency method. This method can also be implemented in the low and high Q condition, shallow and deep wavelet targets and in the low and high SNR conditions of seismic data. The limitations in the PFS and CFS methods can be reduced by this method Universiti Kebangsaan Malaysia 2012-08 Article PeerReviewed application/pdf en http://journalarticle.ukm.my/5416/1/03%2520Maman%2520Hermana.pdf Maman Hermana, and Hammad Hazim Mohd Azhar, and Zuhar Zahir Tuan Harith, (2012) A new algorithm to estimate attenuation using frequency shift methods. Sains Malaysiana, 41 (8). pp. 953-959. ISSN 0126-6039 http://www.ukm.my/jsm/ |
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This paper presents the improvement of quality factor (Q) estimation using shift frequency method. A new method was developed based on two previous methods; peak frequency shift (PFS) method and centroid frequency shift (CFS) method. The proposed algorithm has been tested to gauge its performance using three different scenarios; Q variation, travel time variation, and signal to noise ratio (SNR) variation. The test was performed using the Ricker wavelet with random noise included. Based on the results obtained, it can be concluded that the new proposed method was able to improve Q estimation using shift frequency method. This method can also be implemented in the low and high Q condition, shallow and deep wavelet targets and in the low and high SNR conditions of seismic data. The limitations in the PFS and CFS methods can be reduced by this method |
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Maman Hermana, Hammad Hazim Mohd Azhar, Zuhar Zahir Tuan Harith, |
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Maman Hermana, Hammad Hazim Mohd Azhar, Zuhar Zahir Tuan Harith, A new algorithm to estimate attenuation using frequency shift methods |
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Maman Hermana, Hammad Hazim Mohd Azhar, Zuhar Zahir Tuan Harith, |
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Maman Hermana, |
title |
A new algorithm to estimate attenuation using frequency shift methods |
title_short |
A new algorithm to estimate attenuation using frequency shift methods |
title_full |
A new algorithm to estimate attenuation using frequency shift methods |
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A new algorithm to estimate attenuation using frequency shift methods |
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A new algorithm to estimate attenuation using frequency shift methods |
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new algorithm to estimate attenuation using frequency shift methods |
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Universiti Kebangsaan Malaysia |
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2012 |
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http://journalarticle.ukm.my/5416/1/03%2520Maman%2520Hermana.pdf http://journalarticle.ukm.my/5416/ http://www.ukm.my/jsm/ |
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