MO-A3.1P: Integral Equation Methods II
Mon, 6 Dec, 14:00 - 17:40 Singapore Time (UTC +8)
Mon, 6 Dec, 07:00 - 10:40 France Time (UTC +2)
Mon, 6 Dec, 06:00 - 09:40 UTC
Mon, 6 Dec, 01:00 - 04:40 New York Time (UTC -4)
Location: Peony Junior Ballroom 4511
Session Co-Chairs: Shunchuan Yang, Beihang University and Dirk Manteuffel, Leibniz University Hannover
Session Manager: Room R12 Manager
Track: AP-S General Topics
Mon, 6 Dec, 14:00 - 14:20 Singapore Time (UTC +8)
Mon, 6 Dec, 07:00 - 07:20 France Time (UTC +2)
Mon, 6 Dec, 06:00 - 06:20 UTC
Mon, 6 Dec, 01:00 - 01:20 New York Time (UTC -4)

MO-A3.1P.1: Radiated Near Field Prediction based on Equivalent Source Reconstruction Method with Truncated Singular Value Decomposition

Chang Liu, Huapeng Zhao, Jun Hu, University of Electronic Science and Technology of China, China
Mon, 6 Dec, 14:20 - 14:40 Singapore Time (UTC +8)
Mon, 6 Dec, 07:20 - 07:40 France Time (UTC +2)
Mon, 6 Dec, 06:20 - 06:40 UTC
Mon, 6 Dec, 01:20 - 01:40 New York Time (UTC -4)

MO-A3.1P.2: Mesh Sharing Based Fast Parameter Sweep for EM Simulation Accelerated by H-matrix

Yu Zhao, Song Zhang, Long Li, Xidian University, China; Fuyao Hou, Xidian Univeritity, China
Mon, 6 Dec, 14:40 - 15:00 Singapore Time (UTC +8)
Mon, 6 Dec, 07:40 - 08:00 France Time (UTC +2)
Mon, 6 Dec, 06:40 - 07:00 UTC
Mon, 6 Dec, 01:40 - 02:00 New York Time (UTC -4)

MO-A3.1P.3: A Hybrid SIE-PDE Formulation Without Additional Boundary Conditions for Electromagnetic Analysis

Aipeng Sun, Shunchuan Yang, Beihang University, China
Mon, 6 Dec, 15:00 - 15:20 Singapore Time (UTC +8)
Mon, 6 Dec, 08:00 - 08:20 France Time (UTC +2)
Mon, 6 Dec, 07:00 - 07:20 UTC
Mon, 6 Dec, 02:00 - 02:20 New York Time (UTC -4)

MO-A3.1P.4: The Dyadic Green’s Function for the Rectangular Dielectric Cavity

Guizhen Lu, Meng Wang, Communication University of China, China
Mon, 6 Dec, 15:20 - 15:40 Singapore Time (UTC +8)
Mon, 6 Dec, 08:20 - 08:40 France Time (UTC +2)
Mon, 6 Dec, 07:20 - 07:40 UTC
Mon, 6 Dec, 02:20 - 02:40 New York Time (UTC -4)

MO-A3.1P.5: Combined Potential-Field Formulation for Densely Discretized Conductors

Gokhan Karaova, Ozgur Eris, Ozgur Ergul, Middle East Technical University, Turkey
Tea Break
Mon, 6 Dec, 16:00 - 16:20 Singapore Time (UTC +8)
Mon, 6 Dec, 09:00 - 09:20 France Time (UTC +2)
Mon, 6 Dec, 08:00 - 08:20 UTC
Mon, 6 Dec, 03:00 - 03:20 New York Time (UTC -4)

MO-A3.1P.6: Acceleration of the Surface Test Integral Using Vertex Functions

Javier Rivero, Francesca Vipiana, Politecnico di Torino, Italy; Donald Wilton, University of Houston, United States; William Johnson, Consultant, United States
Mon, 6 Dec, 16:20 - 16:40 Singapore Time (UTC +8)
Mon, 6 Dec, 09:20 - 09:40 France Time (UTC +2)
Mon, 6 Dec, 08:20 - 08:40 UTC
Mon, 6 Dec, 03:20 - 03:40 New York Time (UTC -4)

MO-A3.1P.7: On the Low-Frequency Scaling of Vector Potential Integral Equation Solutions

Rui Chen, Hakan Bagci, King Abdullah University of Science and Technology, Saudi Arabia
Mon, 6 Dec, 16:40 - 17:00 Singapore Time (UTC +8)
Mon, 6 Dec, 09:40 - 10:00 France Time (UTC +2)
Mon, 6 Dec, 08:40 - 09:00 UTC
Mon, 6 Dec, 03:40 - 04:00 New York Time (UTC -4)

MO-A3.1P.8: Low-Frequency Stable Discretization of the Electric Field Integral Equation based on Poincaré’s Lemma

Bernd Hofmann, Thomas F. Eibert, Technical University of Munich, Germany; Francesco P. Andriulli, Politecnico di Torino, Italy; Simon B. Adrian, Universität Rostock, Germany
Mon, 6 Dec, 17:00 - 17:20 Singapore Time (UTC +8)
Mon, 6 Dec, 10:00 - 10:20 France Time (UTC +2)
Mon, 6 Dec, 09:00 - 09:20 UTC
Mon, 6 Dec, 04:00 - 04:20 New York Time (UTC -4)

MO-A3.1P.9: Green’s Function Implementation for Characteristic Modes in Various Environments

Axel Hoffmann, Dirk Manteuffel, Leibniz University Hannover, Germany
Mon, 6 Dec, 17:20 - 17:40 Singapore Time (UTC +8)
Mon, 6 Dec, 10:20 - 10:40 France Time (UTC +2)
Mon, 6 Dec, 09:20 - 09:40 UTC
Mon, 6 Dec, 04:20 - 04:40 New York Time (UTC -4)

MO-A3.1P.10: DG-JMCFIE Formulation for Composite Multimaterial Objects

Victor F Martin, David Larios, Jose M Taboada, Luis Landesa, University of Extremadura, Spain; Fernando Obelleiro, University of Vigo, Spain

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Microwave Vision Group
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