Semantic Scholar Open Access 2026

Analysis of Telegraph Equation for Propagating Waves with Dispersion and Attenuation

Hyoung-In Lee Sang-Hyeon Kim Tae-Yeon Kim Hee-jeong Moon

Abstrak

The structural vibration of industrial droplet dispensers can be modeled by telegraph-like equations to a good approximation. We reinterpret the telegraph equation from the standpoint of an electric–circuit system consisting of an inductor and a resistor, which is in interaction with an environment, say, a substrate. This interaction takes place through a capacitor and a shunt resistor. Such interactions serve as leakage. We have performed an analytical investigation of the frequency dispersion of telegraph equations over an unbounded one-dimensional domain. By varying newly identified key parameters, we have not only recovered the well-known characteristics but also discovered crossover phenomena regarding phase and group velocities. We have examined frequency responses of the electric circuit underlying telegraph equations, thereby confirming the role as low-pass filters. By identifying a set of physically meaningful reduced cases, we have laid the foundations on which we could further explore wave propagations over a finite domain with appropriate side conditions.

Penulis (4)

H

Hyoung-In Lee

S

Sang-Hyeon Kim

T

Tae-Yeon Kim

H

Hee-jeong Moon

Format Sitasi

Lee, H., Kim, S., Kim, T., Moon, H. (2026). Analysis of Telegraph Equation for Propagating Waves with Dispersion and Attenuation. https://doi.org/10.3390/foundations6010001

Akses Cepat

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Informasi Jurnal
Tahun Terbit
2026
Bahasa
en
Sumber Database
Semantic Scholar
DOI
10.3390/foundations6010001
Akses
Open Access ✓