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publications:annualreports:saig_21 [2021/01/24 23:41] msacchi |
publications:annualreports:saig_21 [2021/01/25 00:06] msacchi |
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- | <fc #008000>SAIG21 (2020) Annual Report</fc>\\ | + | <fc #008000>SAIG 21 (2020) Annual Report</fc>\\ |
<WRAP indent>{{:sponsorsandstudents:report21.pdf | | <WRAP indent>{{:sponsorsandstudents:report21.pdf | | ||
Complete annual report as a single file (52.9 MB)}}</WRAP> | Complete annual report as a single file (52.9 MB)}}</WRAP> | ||
- | <fc #008000>SAIG21-1 (2020) Rongzhi Lin, Breno Bahia and M D Sacchi </fc>\\ | + | <fc #008000>SAIG 21-1 (2020) Rongzhi Lin, Breno Bahia and M D Sacchi </fc>\\ |
- | <WRAP indent>{{:sponsorsandstudents:saig21r:chap_01.pdf | Simultaneous source separation via iterative robust de-noising with low-rank Hankel constraint }}</WRAP> | + | <WRAP indent>{{:sponsorsandstudents:saig21r:chap_01.pdf | Simultaneous source separation via iterative robust de-noising with low-rank Hankel constraint }}\\ |
+ | Matlab Package: {{:sponsorsandstudents:deblending_Robust_SSA.zip | deblending_Robust_SSA.zip}} | ||
- | <fc #008000>SAIG21-2 (2020) Yi Guo </fc>\\ | + | |
+ | </WRAP> | ||
+ | |||
+ | <fc #008000>SAIG 21-2 (2020) Yi Guo </fc>\\ | ||
<WRAP indent>{{:sponsorsandstudents:saig21r:chap_02.pdf | Data-driven optimal sparse seismic acquisition design and reconstruction }}</WRAP> | <WRAP indent>{{:sponsorsandstudents:saig21r:chap_02.pdf | Data-driven optimal sparse seismic acquisition design and reconstruction }}</WRAP> | ||
- | <fc #008000>SAIG21-3 (2020) Yi Guo </fc>\\ | + | <fc #008000>SAIG 21-3 (2020) Yi Guo </fc>\\ |
<WRAP indent>{{:sponsorsandstudents:saig21r:chap_03.pdf |Time-lapse acquisition design via optimal receiver-source placement and reconstruction }}</WRAP> | <WRAP indent>{{:sponsorsandstudents:saig21r:chap_03.pdf |Time-lapse acquisition design via optimal receiver-source placement and reconstruction }}</WRAP> | ||
- | <fc #008000>SAIG21-4 (2020) Fernanda Carozzi </fc>\\ | + | <fc #008000>SAIG 21-4 (2020) Fernanda Carozzi </fc>\\ |
- | <WRAP indent>{{:sponsorsandstudents:saig21r:chap_04.pdf |Robust reconstruction via a generalized loss function }}</WRAP> | + | <WRAP indent>{{:sponsorsandstudents:saig21r:chap_04.pdf |Robust reconstruction via a generalized loss function }}\\ |
+ | Julia package {{sponsorsandstudents:Robust_Reconstruction_GLF.zip| Robust_Reconstrtuction_GLF.zip}} | ||
+ | </WRAP> | ||
- | <fc #008000>SAIG21-5 (2020) Ji Li and M D sacchi </fc>\\ | + | <fc #008000>SAIG 21-5 (2020) Ji Li and M D sacchi </fc>\\ |
- | <WRAP indent>{{:sponsorsandstudents:saig21r:chap_05.pdf |Deblending via Fast Robust Greedy Pursuit }}</WRAP> | + | <WRAP indent>{{:sponsorsandstudents:saig21r:chap_05.pdf |Deblending via Fast Robust Greedy Pursuit }}\\ |
+ | Matlab package {{sponsorsandstudents:Robust_MP.zip| Robust_MP.zip}} | ||
+ | </WRAP> | ||
- | <fc #008000>SAIG21-6 (2020) Breno Bahia, Rongzhi Lin and M D Sacchi</fc>\\ | + | <fc #008000>SAIG 21-6 (2020) Breno Bahia, Rongzhi Lin and M D Sacchi</fc>\\ |
- | <WRAP indent>{{:sponsorsandstudents:saig21r:chap_06.pdf |Regularization by Denoising for simultaneous source separation }}</WRAP> | + | <WRAP indent>{{:sponsorsandstudents:saig21r:chap_06.pdf |Regularization by Denoising for simultaneous source separation }} |
+ | \\ | ||
+ | Julia package {{sponsorsandstudents:RED_Deblending.zip| RED_Deblending.zip}} | ||
+ | </WRAP> | ||
- | <fc #008000>SAIG21-7 (2020) Breno Bahia and M D Sacchi</fc>\\ | + | <fc #008000>SAIG 21-7 (2020) Breno Bahia and M D Sacchi</fc>\\ |
<WRAP indent>{{:sponsorsandstudents:saig21r:chap_07.pdf |Cayley-Dickson representation of surface waves | <WRAP indent>{{:sponsorsandstudents:saig21r:chap_07.pdf |Cayley-Dickson representation of surface waves | ||
}}</WRAP> | }}</WRAP> | ||
- | <fc #008000>SAIG21-8 (2020) Breno Bahia and M D Sacchi</fc>\\ | + | <fc #008000>SAIG 21-8 (2020) Breno Bahia and M D Sacchi</fc>\\ |
- | <WRAP indent>{{:sponsorsandstudents:saig21r:chap_08.pdf |From low rank matrices to sparse vectors in the presence of atypical observations | + | <WRAP indent>{{:sponsorsandstudents:saig21r:chap_08.pdf |From low-rank matrices to sparse vectors in the presence of atypical observations |
}}</WRAP> | }}</WRAP> | ||
- | <fc #008000>SAIG21-9 (2020) Kristian D. T. Bautista and Mauricio Sacchi</fc>\\ | + | <fc #008000>SAIG 21-9 (2020) Kristian D. T. Bautista and Mauricio Sacchi</fc>\\ |
- | <WRAP indent>{{:sponsorsandstudents:saig21r:chap_09.pdf |Deep-LSRTM: Solving least-squares reverse time migra- tion with learned updating operators | + | <WRAP indent>{{:sponsorsandstudents:saig21r:chap_09.pdf |Deep-LSRTM: Solving least-squares reverse time migration with learned updating operators |
- | }}</WRAP> | + | }}\\ |
+ | Python/TensorFlow package: Contact Kristian for Dockerfile | ||
+ | </WRAP> | ||
- | <fc #008000>SAIG21-10 (2020) Amsalu Anagaw and Mauricio Sacchi</fc>\\ | + | <fc #008000>SAIG 21-10 (2020) Amsalu Anagaw and Mauricio Sacchi</fc>\\ |
- | <WRAP indent>{{:sponsorsandstudents:saig21r:chap_19.pdf |Regularization by Denoising (RED) with adaptive-weighted Total Variation for 3D FWI model updates in large- contrast media | + | <WRAP indent>{{:sponsorsandstudents:saig21r:chap_10.pdf |Regularization by Denoising (RED) with adaptive-weighted Total Variation for 3D FWI model updates in large-contrast media |
}}</WRAP> | }}</WRAP> | ||
- | <fc #008000>SAIG21-11 (2020) Jhonatan Amado</fc>\\ | + | <fc #008000>SAIG 21-11 (2020) Jhonatan Amado</fc>\\ |
- | <WRAP indent>{{:sponsorsandstudents:saig21r:chap_19.pdf |Three-dimensional time-domain finite-difference modelling for viscoelastic seismic wave propagation. | + | <WRAP indent>{{:sponsorsandstudents:saig21r:chap_11.pdf |Three-dimensional time-domain finite-difference modelling for viscoelastic seismic wave propagation. |
}}</WRAP> | }}</WRAP> | ||