Beta
33564

Effect of Damping Constant and Rotor Inertia Constant On One- Dimensional Ring Power System Electromechanical Wave Propagation

Article

Last updated: 04 Jan 2025

Subjects

-

Tags

-

Abstract

Abstract:
This paper completes the previous work that introduced the analysis of the
electromechanical wave propagation that follow a disturbance occurring at any
machine in the one-dimensional ring power system model. The analysis is
performed for the varying of damping constant (D) and rotor inertia constant
(M) of the system machines. The continuum principle, which considered for the
power system leads to a set of nonlinear partial differential equations (PDE). So,
the discretization concept was applied in this paper. MATLAB package is used
to carry out the simulation. From which, some of the wave propagation
parameters are calculated. Simulation results in different situations are presented
and discussed. These results present and show the important effect of damping
constant and rotor inertia constant on one-dimensional ring power system
electromechanical wave propagation.

DOI

10.21608/iceeng.2006.33564

Keywords

Electromechanical wave propagation, damping constant, rotor inertia constant, one-dimensional system and continuum system

Authors

First Name

W.

Last Name

Sabry

MiddleName

-

Affiliation

-

Email

-

City

-

Orcid

-

Volume

5

Article Issue

5th International Conference on Electrical Engineering ICEENG 2006

Related Issue

5615

Issue Date

2006-05-01

Receive Date

2019-05-28

Publish Date

2006-05-01

Page Start

1

Page End

11

Print ISSN

2636-4433

Online ISSN

2636-4441

Link

https://iceeng.journals.ekb.eg/article_33564.html

Detail API

https://iceeng.journals.ekb.eg/service?article_code=33564

Order

37

Type

Original Article

Type Code

833

Publication Type

Journal

Publication Title

The International Conference on Electrical Engineering

Publication Link

https://iceeng.journals.ekb.eg/

MainTitle

Effect of Damping Constant and Rotor Inertia Constant On One- Dimensional Ring Power System Electromechanical Wave Propagation

Details

Type

Article

Created At

22 Jan 2023