Pemodelan Interaksi Medan Listrik Dinamis dan Gelombang Elektromagnetik
DOI:
https://doi.org/10.61722/jinu.v3i1.7491Keywords:
Dynamic electric fields, electromagnetic waves, FDTD, numerical models, wave propagation.Abstract
This research stems from the need to understand the complex relationship between time-varying electric fields and electromagnetic waves, which often presents difficulties in simulating their propagation in various media. The primary focus is to develop a numerical model capable of predicting the dynamics of this interaction, thus enabling its use in antenna development and radiation evaluation. The applied method includes a Finite-Difference Time-Domain approach, which solves the fundamental equations stepwise in both the time and space domains. The results show that the model is capable of reproducing transverse propagation patterns with a high degree of accuracy and detecting strong mutual induction effects at high frequencies. These findings provide a foundation for improving the performance of electromagnetic devices, minimizing potential interference, and opening up new innovations in the telecommunications sector.
References
SEIGI, dkk. (t.t.). Antena MIMO 4 Elemen untuk Komunikasi 5G pada Frekuensi 28 GHz. Jurnal Rekayasa Elektrika, 18(3-4), 158-164.
SHABRINA, N.H., dkk. (2018). Penggunaan Metode FDTD untuk Analisis Gelombang Elektromagnetik pada Struktur Silinder. Jurnal Nasional Teknik Elektro dan Teknologi Informasi, 7(3), 164-170.
YUDISTIRA, H.T., dkk. (t.t.). Penggunaan Metode Finite Difference Time Domain (FDTD) dalam Simulasi Phased Array Antenna. Jurnal Teknik Elektro.
Perancangan dan Simulasi Antena Mikrostrip MIMO 4×4 untuk Aplikasi 5G. (t.t.). Jurnal Teknik Elektro
Simulasi Perambatan Gelombang pada 2 Dimensi Menggunakan FDTD. (2025). Repository Universitas Diponegoro.
Mutual Coupling Reduction of E-Shaped MIMO Antenna with Matrix of C-Shaped Resonators. (2018). International Journal of Antennas and Propagation, 2018, 1-12.
Metode Finite-Difference Time-Domain (FDTD) untuk Analisis Gelombang. (2012). Repository ITB.
D FDTD Method for Modeling of Seismo-Electromagnetics. (2020). Majalah Teknik Elektro, 23(2).
Penerapan Metode FDTD untuk Menganalisis Pengaruh Pelapisan. (2024). Energies, 17(20), 5168.
Desain antena MIMO dual band yang sangat efisien. (2025). Scientific Reports.
Sistem Antena Berkinerja Tinggi dalam Konfigurasi MIMO. (2023). Radio Science.
Simulasi peningkatan broadband antena menggunakan FDTD. (t.t.). Jurnal Teknik Elektro Polban.
Teori Maxwell Tentang Gelombang Elektromagnetik. (2025). Scribd.
Persamaan Maxwell Dan Gelombang Elektromagnetik. (2025). Scribd.
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