High Efficiency Iterative Solver for Modeling Composite Rough Surface Electromagnetic Scattering
This article proposes a hybrid iterative solver for modeling composite rough surface electromagnetic scattering. First, a kind of divisional rough surface with the shape of a round water zone embedded in a larger land rough surface is modeled, in which the former is built by Pierson-Moscowitz spectr...
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| Published in | Electromagnetics Vol. 37; no. 2; pp. 113 - 126 |
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| Main Authors | , , |
| Format | Journal Article |
| Language | English |
| Published |
Philadelphia
Taylor & Francis
17.02.2017
Taylor & Francis Ltd |
| Subjects | |
| Online Access | Get full text |
| ISSN | 0272-6343 1532-527X |
| DOI | 10.1080/02726343.2017.1279113 |
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| Abstract | This article proposes a hybrid iterative solver for modeling composite rough surface electromagnetic scattering. First, a kind of divisional rough surface with the shape of a round water zone embedded in a larger land rough surface is modeled, in which the former is built by Pierson-Moscowitz spectrum; the latter is by Gauss spectrum. Second, aiming at fast computing scattering from this kind of composite rough surface with large scale and fast waving, a hybrid iterative solver is based on forward-backward iterative physical optics with several acceleration strategies, as well as impedance boundary condition. Finally, numerical results show that this hybrid iterative solver can satisfy the requirement for high efficiency, reliable precision in computing scattering from large scale composite rough surface. |
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| AbstractList | This article proposes a hybrid iterative solver for modeling composite rough surface electromagnetic scattering. First, a kind of divisional rough surface with the shape of a round water zone embedded in a larger land rough surface is modeled, in which the former is built by Pierson-Moscowitz spectrum; the latter is by Gauss spectrum. Second, aiming at fast computing scattering from this kind of composite rough surface with large scale and fast waving, a hybrid iterative solver is based on forward-backward iterative physical optics with several acceleration strategies, as well as impedance boundary condition. Finally, numerical results show that this hybrid iterative solver can satisfy the requirement for high efficiency, reliable precision in computing scattering from large scale composite rough surface. |
| Author | Sun, Hua Long Zou, Gao Xiang Tong, Chuang Ming |
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| Cites_doi | 10.1109/8.376032 10.1002/mop.4650071003 10.1109/TAP.2004.842586 10.3233/JAE-121640 10.1109/TAP.2004.841317 10.1121/1.396188 10.1029/JZ069i024p05181 10.1109/8.633855 10.1002/cpa.3160040206 10.1109/36.508413 10.1002/0471224286 10.1007/BF02328530 10.1002/mop.4650080506 10.1109/TAP.2004.825491 10.1029/97JC00190 10.1109/74.924601 10.1109/MAP.2003.1203119 10.1109/TAP.1978.1141854 10.1029/92RS01782 |
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| SubjectTerms | Composite rough surface Computation Efficiency Electromagnetic scattering Electromagnetics fast multipole method-based algorithms forward-backward iterative physical optics Iterative methods message passing interface-based parallelization Modelling Optics relax factor Scattering Solvers Strategy |
| Title | High Efficiency Iterative Solver for Modeling Composite Rough Surface Electromagnetic Scattering |
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