1D DB-FDTD formulation using flux density for study of electromagnetic wave propagation
Abstract & Details
Research Area
Electromagnetical Engineering
Keywords
FDTD 1D
ABC
Loss layer
Dielectric medium
DB-FDTD
Flux density
Abstract
In order to implement simultaneously in the same FDTD simulation an ABC (Absorbing Boundary Condition) formed by loss layers and a dielectric medium within the FDTD grid, the DB-FDTD formulation for the 1D case is studied in this paper. The DB-FDTD formulation uses the electric and magnetic flux densities in Maxwell's equations. The DB-FDTD formulation allows to separate the update equations in the program into two categories. One equation group will be used for the implementation of loss layers, and another group for the definition of simulation space using the space-dependent electromagnetic parameters. Simulations for the 1D case are implemented with sources introduced by TFSF (Total Field Scattered Field) limit. In order to compare the classic FDTD formulation with the DB-FDTD formulation, the execution times of the programs are calculated.
License
This work is licensed under a Creative
Commons
Attribution-ShareAlike 4.0 International License.
Author Information
| # | Name | Institute / Affiliation |
|---|---|---|
| 1 | RANDRIAMAROSON Rivo Mahandrisoa | SE-I-MSDE, ED-STII |
| 2 | RAKOTOMIRAHO Soloniaina | SE-I-MSDE, ED-STII |
| 3 | RATSIMBA Mamy Nirina | SE-I-MSDE, ED-STII |
How to Cite
Use the following formats to cite this article in your research.
APA Style
Mahandrisoa, RANDRIAMAROSON Rivo, Soloniaina, RAKOTOMIRAHO, & Nirina, RATSIMBA Mamy (2020). 1D DB-FDTD formulation using flux density for study of electromagnetic wave propagation. International Journal of Advance Research and Innovative Ideas In Education, 6(5), 2202-2208.
MLA Style
Mahandrisoa, RANDRIAMAROSON Rivo, et al. "1D DB-FDTD formulation using flux density for study of electromagnetic wave propagation." International Journal of Advance Research and Innovative Ideas In Education, vol. 6, no. 5, 2020, pp. 2202-2208.
IEEE Style
RANDRIAMAROSON Rivo Mahandrisoa, RAKOTOMIRAHO Soloniaina, and RATSIMBA Mamy Nirina, "1D DB-FDTD formulation using flux density for study of electromagnetic wave propagation," International Journal of Advance Research and Innovative Ideas In Education, vol. 6, no. 5, pp. 2202-2208, 2020.
Vancouver Style
Mahandrisoa RANDRIAMAROSON Rivo, Soloniaina RAKOTOMIRAHO, Nirina RATSIMBA Mamy. 1D DB-FDTD formulation using flux density for study of electromagnetic wave propagation. International Journal of Advance Research and Innovative Ideas In Education. 2020;6(5):2202-2208.
Harvard Style
Mahandrisoa, RANDRIAMAROSON Rivo, Soloniaina, RAKOTOMIRAHO, & Nirina, RATSIMBA Mamy (2020) '1D DB-FDTD formulation using flux density for study of electromagnetic wave propagation', International Journal of Advance Research and Innovative Ideas In Education, 6(5), pp. 2202-2208.
Chicago Style
Mahandrisoa, RANDRIAMAROSON Rivo, RAKOTOMIRAHO Soloniaina, and RATSIMBA Mamy Nirina. "1D DB-FDTD formulation using flux density for study of electromagnetic wave propagation." International Journal of Advance Research and Innovative Ideas In Education 6, no. 5 (2020): 2202-2208.
Turabian Style
Mahandrisoa, RANDRIAMAROSON Rivo, RAKOTOMIRAHO Soloniaina, and RATSIMBA Mamy Nirina. "1D DB-FDTD formulation using flux density for study of electromagnetic wave propagation." International Journal of Advance Research and Innovative Ideas In Education 6, no. 5 (2020): 2202-2208.
Related Research
ROBUST BALANCE CONTROL OF TWO-WHEELED BICYCLES A COMPARATIVE STUDY OF H∞ LOOP SHAPING AND PID APPROACHES
PDF Unavailable
USING NEURAL NETWORKS TO PREDICT THREE-PHASE TRANSFORMER FAILURES BASED ON ELECTRICAL SIGNALS AND MECHANICAL VIBRATIONS
PDF Unavailable
APPLICATION OF VARIATIONAL QUANTUM CLASSIFIER IN FAULT CLASSIFICATION ON THREE-PHASE POWER TRANSMISSION LINE
PDF Unavailable
Review of Recent Advances in Solar Energy Technology
PDF Unavailable
Analytical Sizing and Layout of a High-Gain CMOS Comparator for Mixed-Signal Applications
PDF Unavailable
Daul power generation by using solar and windmill generator
PDF Unavailable