The paper aims the electromagnetic simulation of a synchronous impedance transformer using a combination of the finite difference time domain FDTD and the method of lines MoL. The study demonstrates that the hybrid technique called FDTD-MoL can be used for the characterization of passive microstrip circuits. The capability to combine different methods of electromagnetic simulation provides a powerful tool for interpreting the behavior of microwave circuits. The hybrid FDTD-MoL method can characterize microstrip planar structures and is comparable with previous case studies of electromagnetic simulation. © IEICE 2011
The 3D Finite-Difference Time-Domain (FDTD) method simulates structures in the time-domain using a d...
This work pertains to the study of passive electronic devices with fine features, e.g., electronic p...
This work pertains to the study of passive electronic devices with fine features, e.g., electronic p...
The paper aims the electromagnetic simulation of a synchronous impedance transformer using a combina...
Several practical criteria to improve the performance of a mixed FDTD-MoL method of electromagnetic ...
Several practical criteria to improve the performance of a mixed FDTD-MoL method of electromagnetic ...
RESUMEN: En este trabajo se realiza un estudio de varias extensiones del método de las diferencias f...
Journal ArticleThis paper extends the finite-difference time-domain (FDTD) method to include distri...
In high-frequency ranges, the present electronic design automation software has limited capabilities...
In high-frequency ranges, the present electronic design automation software has limited capabilities...
In high-frequency ranges, the present electronic design automation software has limited capabilities...
Microwave circuits play an important role in wireless communications. Microwave circuits are made up...
The Finite-Difference Time-Domain (FDTD) method has gained tremendous popularity in the past decade ...
The Finite-Difference Time-Domain (FDTD) method has gained tremendous popularity in the past decade ...
This paper discusses high-performance computing from the hardware, software, and algorithmic perspec...
The 3D Finite-Difference Time-Domain (FDTD) method simulates structures in the time-domain using a d...
This work pertains to the study of passive electronic devices with fine features, e.g., electronic p...
This work pertains to the study of passive electronic devices with fine features, e.g., electronic p...
The paper aims the electromagnetic simulation of a synchronous impedance transformer using a combina...
Several practical criteria to improve the performance of a mixed FDTD-MoL method of electromagnetic ...
Several practical criteria to improve the performance of a mixed FDTD-MoL method of electromagnetic ...
RESUMEN: En este trabajo se realiza un estudio de varias extensiones del método de las diferencias f...
Journal ArticleThis paper extends the finite-difference time-domain (FDTD) method to include distri...
In high-frequency ranges, the present electronic design automation software has limited capabilities...
In high-frequency ranges, the present electronic design automation software has limited capabilities...
In high-frequency ranges, the present electronic design automation software has limited capabilities...
Microwave circuits play an important role in wireless communications. Microwave circuits are made up...
The Finite-Difference Time-Domain (FDTD) method has gained tremendous popularity in the past decade ...
The Finite-Difference Time-Domain (FDTD) method has gained tremendous popularity in the past decade ...
This paper discusses high-performance computing from the hardware, software, and algorithmic perspec...
The 3D Finite-Difference Time-Domain (FDTD) method simulates structures in the time-domain using a d...
This work pertains to the study of passive electronic devices with fine features, e.g., electronic p...
This work pertains to the study of passive electronic devices with fine features, e.g., electronic p...