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A Single-Field Finite Difference Time-Domain Method Verified Using a Novel Antenna Design with an Artificial Magnetic Conductor Enhanced Structure. [PDF]
Qi Y +7 more
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Sputtered AlN Buffer Layer for Low-Loss Crystalline AlN-on-Sapphire Integrated Photonics. [PDF]
Brunetta S +6 more
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Optimization of microwave hyperthermia system for focused breast cancer treatment: A study using realistic digital breast phantoms. [PDF]
Acar B, Yilmaz T, Yapar A.
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Laser writing of plasmonic catalytic microchannels on UiO-66 layer.
Gorbunova A +10 more
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Comparison between HIE‐FDTD method and ADI‐FDTD method
Microwave and Optical Technology Letters, 2007AbstractThis letter gives the comparison of the 3D hybrid implicit–explicit finite‐difference time‐domain (HIE‐FDTD) method with the ADI‐FDTD method through numerical examples. It shows that the HIE‐FDTD method has higher accuracy than the ADI‐FDTD method, especially for larger rate of field variation; the time step size, which has a detrimental effect
Juan Chen, Jianguo Wang
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Accuracy improved ADI‐FDTD methods
International Journal of Numerical Modelling: Electronic Networks, Devices and Fields, 2006AbstractFDTD method plays an important role for simulation of different structures in various fields of engineering, such as RF/microwaves, photonics and VLSI. However, due to the CFL stability constraint, the FDTD time step is still small and the related CPU time is still large for modelling fine geometry where small cell sizes are required to resolve
Ahmed, Iftikhar, Chen, Zhizhang (David)
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Error reduced ADI-FDTD methods
IEEE Antennas and Wireless Propagation Letters, 2005The Courant-Friedrich-Levy (CFL) stability condition makes the explicit finite-difference time-domain (FDTD) methods computationally expensive in applications where small cell sizes are needed to resolve high variations of fields. To circumvent the problem, unconditionally stable alternate-direction implicit (ADI)-FDTD method has been recently proposed.
I. Ahmed, null Zhizhang Chen
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Effective hybrid MPSTD-FDTD method
2009 3rd IEEE International Symposium on Microwave, Antenna, Propagation and EMC Technologies for Wireless Communications, 2009In order to accurately model and quickly analyze the irregular microstrip patch antenna, the hybrid MPSTD-FDTD method is proposed based on the combination of multidomain pseudospectral time-domain (MPSTD) and finite difference time domain (FDTD), the hybrid method possesses the advantages of MPSTD and FDTD.
Yongjin Jiang +3 more
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