THP-A3.1P: FDTD Advances |
Session Type: Interactive Forum |
Poster Time: Thursday, July 13, 16:00 - 18:00 |
Presentation Time: Thursday, July 13, 16:00 - 17:00 |
Starts on Board: A.41 |
Location: Grand Hall A |
Session Chairs: Mike Potter, University of Calgary and Dan Jiao, Purdue University
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THP-A3.1P.1: A SPATIALLY-FILTERED FDTD SUB-GRIDDING SCHEME FOR GROUND PENETRATING RADAR SCENARIOS |
Xiao-Kun Wei, University of Electronic Science and Technology of China, China; Xingqi Zhang, University of Toronto, Canada; Nectaria Diamanti, Sensors & Software Inc., Canada; Costas D. Sarris, University of Toronto, Canada |
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THP-A3.1P.2: A LEAPFROG ALTERNATING-DIRECTION HYBRID IMPLICIT-EXPLICIT FDTD METHOD |
Arne Van Londersele, Daniël De Zutter, Dries Vande Ginste, Ghent University, Belgium |
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THP-A3.1P.3: REDUCED-ORDER MODELING IN FDTD SUBGRIDDING WITH COMPLEXITY INDEPENDENT OF THE GRID REFINEMENT RATIO |
Xinyue Zhang, Piero Triverio, University of Toronto, Canada |
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THP-A3.1P.4: REALIZING PEC BOUNDARY CONDITIONS ON LEBEDEV GRID |
Mahbod Salmasi, Mike Potter, Michal Okoniewski, University of Calgary, Canada |
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THP-A3.1P.5: A SYMMETRIC POSITIVE SEMI-DEFINITE 3-D FDTD SUBGRIDDING ALGORITHM FOR ARBITRARY GRID SETTINGS WITHOUT COMPROMISING ACCURACY |
Jin Yan, Dan Jiao, Purdue University, United States |
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THP-A3.1P.6: A DISSIPATION THEORY FOR 3-D FDTD WITH APPLICATION TO STABLE SUBGRIDDING |
Fadime Bekmambetova, Piero Triverio, University of Toronto, Canada |
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THP-A3.1P.7: A GENERAL APPROACH TO ENSURING THE STABILITY OF UNSYMMETRICAL FDTD SUBGRIDDING SCHEMES |
Jin Yan, Dan Jiao, Purdue University, United States |
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THP-A3.1P.8: OAM 3D VECTOR FIELD VISUALIZATION WITH CFDTD ON CUDA GPUS. |
Gary Junkin, Universidad Autónoma de Barcelona, Spain; Alan Tennant, The University of Sheffield, United Kingdom |
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THP-A3.1P.9: NUMERICAL DISPERSION AND STABILITY PROOF OF THE WLP-FDTD METHOD |
Wei-Jun Chen, Qi-Yuan Zhu, Lingnan Normal University, China; Tu-Lu Liang, Li-Ye Xiao, University of Electronic Science and Technology of China, China |
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THP-A3.1P.10: FDTD SIMULATION OF VERY LARGE DOMAINS APPLIED TO RADAR PROPAGATION OVER THE OCEAN |
Brandon Dowd, Rodolfo Diaz, Arizona State University, United States |
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THP-A3.1P.11: WIDEBAND ADJOINT SENSITIVITY OF DISPERSIVE STRUCTURES USING FDTD METHOD |
Mohamed Bakr, McMaster University, Canada; Atef Elsherbeni, Colorado School of Mines, United States; Veysel Demir, Northern Illinois University, United States |
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THP-A3.1P.12: COMPLEX-ENVELOPE LOD-FDTD FOR WAVE PROPAGATION IN DISPERSIVE METALLIC GRATINGS |
Tu-Lu Liang, Wei Shao, Li-Ye Xiao, University of Electronic Science and Technology of China, China |
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THP-A3.1P.13: 3-D UNIFIED FLOD-FDTD METHOD INCORPORATED WITH LUMPED ELEMENTS |
Zaifeng Yang, Eng Leong Tan, Nanyang Technological University, Singapore |
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THP-A3.1P.14: A FDTD FORMULATION FOR DISPERSIVE BI-ISOTROPIC MEDIA |
Fei Wang, Xidian University, China; Qingsheng Zeng, Shanxi University, China |
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THP-A3.1P.15: FAST ALGORITHM FOR LOSSLESS ANISOTROPIC SIMULATIONS USING THE FDTD METHOD |
Fatih Kaburcuk, Erzurum Technical University, Turkey; Atef Elsherbeni, Colorado School of Mines, United States |
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THP-A3.1P.16: REDUCED-ORDER STOCHASTIC ELECTROMAGNETIC MACRO-MODELS FOR UNCERTAINTY CHARACTERIZATION OF 3-D BAND-GAP STRUCTURES, IN FDTD |
Ata Zadehgol, University of Idaho, United States |
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THP-A3.1P.17: SO-DGTD METHOD FOR DISPERSIVE MEDIA |
Qian Yang, Bing Wei, Linqian Li, Renxian Li, Debiao Ge, Xidian University, China |
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THP-A3.1P.18: CPML DISCRETIZATION ERROR ENHANCEMENT USING SECOND ORDER OF HIGDON’S ANNIHILATION EQUATION |
Amirashkan Darvish, Bijan Gatabi Zakeri, Nafiseh Radkani, Babol Noshirvani University of Technology, Iran; Reza Gholami, University of Manitoba, Canada |
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