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Mohamed M. Saied,
- Professor, Department of Electrical Engineering, Kuwait University, Giza,, Cairo,, Egypt
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This paper presents an efficient and direct technique for determining both the time and frequency responses of non-uniform overhead power transmission lines operating under corona conditions. The assumed-line’s non-uniformity is due to the conductors’ sag. Expressions will be presented for the location-dependent line surge impedance and the unevenly distributed lines’ electrical parameters. The analysis starts with solving the relevant system of differential and algebraic equations, subject to the boundary conditions. Their numerical solution is possible through the application of the software program Mathematica, leading to Laplace-domain expressions for the line’s voltage and current distributions, in terms of the location and the Laplace operator’s. The line’s input impedance can then be derived from the voltage and current at the sending end. The line’s resonance frequencies can also be easily determined. A numerical Laplace inversion using the Hosono algorithm will lead to the corresponding voltage and current equations in the time domain. The effect of the line length, the number of towers, the intensity of the corona discharge as well as the loading condition is taken into consideration. The suggested approach is applied to a typical multi-span overhead high voltage transmission line. A special test case study is investigated to validate the suggested approach and computer code.
Keywords: Electromagnetic, Transients, Simulation, High Voltage Lines, Differential Equations, Parametric ND Solve, Mathematica, Numerical Solutions, Frequency Response. Laplace Transform. Hosono algorithm. Inverse Laplace Transform
[This article belongs to International Journal of Electrical Machine Analysis and Design (ijemad)]
Mohamed M. Saied. The Time and Frequency Response of Non-Uniform Overhead Lines Under Corona. International Journal of Electrical Machine Analysis and Design. 2024; 02(02):1-10.
Mohamed M. Saied. The Time and Frequency Response of Non-Uniform Overhead Lines Under Corona. International Journal of Electrical Machine Analysis and Design. 2024; 02(02):1-10. Available from: https://journals.stmjournals.com/ijemad/article=2024/view=0
References
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- V. Bewley: “Travelling Waves on Transmission Systems”, Book, New York-Dover, 1963.
- Allan Greenwood: “Electrical Transients in Power Systems”, Book, John Wiley & Sons, 1991.
- W. Dommel: “Electromagnetic Transients Program Manual (EMTP Theory Handbook”, Bonneville Power Administration, (1986).
- Van der Sluis “Transients in Power Systems”, Book, John Wiley & Sons., (2001).
- Ovik, NL. “Travelling waves on transmission lines including corona effects”. Thesis Dissertation01 January 1982, OSTI ID: 6313841
- Mohamed Saied, Yosef Safar, Mohamed Salama: Line transients with corona”. Journal of the University of Kuwait, Science; (Kuwait), Jan. 1987.
- Mohamed M. Saied:” Effect of The Conductor Sag on the Electromagnetic Transients in High Voltage Lines”. July 2024, Analog Integrated Circuits and Signal Processing 10(1):8-16
- Mohamed Saied. “On the Transient Response and the Frequency Analysis of Transmission Line Towers”. ISRN Power Engineering, 2013
- Mohamed M. Saied, Youse Safar. “Electromagnetic Transients on Compensated Lines Under Corona”, Electric Machines and Power Systems. 1986; 16(6): 441-462. https://doi.org/10.1080/07313568908909401
- Mohamed Mostafa Saied. “Combined Effect of both the Conductors’ Sag and the Initiating Stimuli on the Electromagnetic Transients in High Voltage Lines”, International Journal of Electrical and Communication Engineering Technology. 2024; 2(2).
- Mohamed M. Saied. “Corona Modeling for the Transient Analysis, Steady-State and Corona Loss Performance of Transmission Lines”, Electrical Power Quality and Utilisation Journal. 2013; XVI (2):11-20.
- Wolfram Mathematica. Tutorial Collection. Advanced Numerical Differential Equation Solving. Mathematica, Book, Wolfram Research, 2008, collection/Advanced Numerical Differential Equation Solving in Mathematica [accessed in November 2019].
- Hosono. “Numerical inversion of Laplace transforms and some applications to wave optics”. November-December 1981; 16(6): 1015-1019.
| Volume | 02 |
| Issue | 02 |
| Received | 09/11/2024 |
| Accepted | 12/11/2024 |
| Published | 23/11/2024 |
